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CHF 102.30
Lipid-Protein Interactions
1. Quartz Crystal Microbalances as Tools for Probing Protein-Membrane Interactions Søren B. Nielsen and Daniel E. Otzen2. Surface Plasmon Resonance for Measuring Interactions of Proteins with Lipid Membranes Vesna Hodnik and Gregor Anderluh3. Probing the Thermodynamics of Protein-Lipid Interactions by Isothermal Titration Calorimetry Musti J. Swamy and Rajeshwer... zur Produkt-Seite
5522408 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIyNjg3NDIwX1Z4OWdhNC1wbmc=!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIyNjg3NDIwX1Z4OWdhNC1wbmd8fnxodHRwczovL29zMS5tZWluZWNsb3VkLmlvL2IxMDE1OC9tZWRpYS9pbWFnZS9lMS85ZC9hYy8zNDU5ODM4ODAwMDAxQV82MDB4NjAwLmpwZw==","post_title":"Lipid-Protein Interactions","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=24670028197&a=401125&m=11816&pref1=9781627032742","labels":[],"brand_id":1,"post_content":"1. Quartz Crystal Microbalances as Tools for Probing Protein-Membrane Interactions S\u00f8ren B. Nielsen and Daniel E. Otzen2. Surface Plasmon Resonance for Measuring Interactions of Proteins with Lipid Membranes Vesna Hodnik and Gregor Anderluh3. Probing the Thermodynamics of Protein-Lipid Interactions by Isothermal Titration Calorimetry Musti J. Swamy and Rajeshwer S. Sankhala4. Differential Scanning Calorimetry of Protein-Lipid Interactions Olga Ca\u00f1adas and Cristina Casals5. Atomic Force Microscopy and Spectroscopy to Probe Single Membrane Proteins in Lipid Bilayers K. Tanuj Sapra6. Optimized Negative-Staining Protocol for Lipid-Protein Interactions Investigated by Electron Microscopy Mark Garewal, Lei Zhang, and Gang Ren7. Examining the Protein-Lipid Complexes using Neutron Scattering Luke A. Clifton, Cameron Neylon, and Jeremy H. Lakey8. Circular-Dichroism and Synchrotron-Radiation Circular-Dichroism Spectroscopy as Tools to Monitor Protein Structure in a Lipid EnvironmentKoichi Matsuo and Kunihiko Gekko 9. Structural Characterization of Membrane Proteins and Peptides by FTIR and ATR-FTIR Spectroscopy Suren A. Tatulian10. F\u00f6rster Resonance Energy Transfer as a Tool for Quantification of Protein-Lipid Selectivity Lu\u00eds M. S. Loura, Manuel Prieto, and F\u00e1bio Fernandes11. A Guide to Tracking Single Transmembrane Proteins in Supported Lipid Bilayers Kumud Raj Poudel, Jeffrey P. Jones, and James A. Brozik12. Fluorescence Correlation Spectroscopy to Examine Protein Lipid Interactions in Membranes Viktoria Betaneli and Petra Schwille13. Analyzing Transmembrane Protein and Hydrophobic Helix Topography by Dual Fluorescence Quenching Gregory A. Caputo and Erwin London14. Studying Lipid-Protein Interactions with Electron Paramagnetic Resonance Spectroscopy of Spin-Labeled Lipids Tibor P\u00e1li and Zolt\u00e1n K\u00f3ta15. EPR Techniques to Probe Insertion and Conformation of Spin-Labeled Proteins in Lipid Bilayers Enrica Bordignon and Yevhen Polyhach16. Solid-State NMR Approaches to Study Protein Structure and Protein-Lipid Interactions Christopher Aisenbrey, Matthias Michalek, Evgeniy S. Salnikov and Burkhard Bechinger 17. Solution NMR Spectroscopy for the Determination of Structures of Membrane Proteins in a Lipid Environment Ashish Arora18. Nanodiscs as a New Tool to Examine Lipid-Protein Interactions Mary A. Schuler, Ilia G. Denisov, and Stephen G. Sligar19. The Simulation Approach to Lipid-Protein Interactions Teresa Paramo, Diana Garzon, Daniel A. Holdbrook, Syma Khalid, and Peter J. Bond","merchants_number":2,"ean":9781627032742,"category_id":103,"size":null,"min_price":102.2999999999999971578290569595992565155029296875,"low_price_merchant_id":1087639,"ID":5522408,"merchants":["dodax","euniverse"],"brand":"undefined","slug":"lipid-protein-interactions","url":"\/unterhaltung\/produkt\/lipid-protein-interactions\/","low_price_merchant_name":null}


CHF 61.60
Protein-Microarrays für die Wirkstoffentwicklung
Emilia Schax beschreibt die Herstellung von Hitzeschockproteinen und die Entwicklung eines direkt-kompetitiven Inhibitor-Screenings für Hitzeschockproteine im Microarray-Format. Dieser Assay liefert in kürzester Zeit mit geringem Materialverbrauch Informationen zu den Bindeeigenschaften potenzieller Inhibitoren, die dann als mögliche Therapeutika dienen könnten. Der Assay basiert auf ... zur Produkt-Seite
4839041 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIxOTY1NjM1XzlHeFBsOS1wbmc=!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIxOTY1NjM1XzlHeFBsOS1wbmc=","post_title":"Protein-Microarrays f\u00fcr die Wirkstoffentwicklung","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=24487220449&a=401125&m=11816&pref1=9783658088026","labels":[],"brand_id":1,"post_content":"Emilia Schax beschreibt die Herstellung von Hitzeschockproteinen und die Entwicklung eines direkt-kompetitiven Inhibitor-Screenings f\u00fcr Hitzeschockproteine im Microarray-Format. Dieser Assay liefert in k\u00fcrzester Zeit mit geringem Materialverbrauch Informationen zu den Bindeeigenschaften potenzieller Inhibitoren, die dann als m\u00f6gliche Therapeutika dienen k\u00f6nnten. Der Assay basiert auf der Kompetition von fluoreszenzmarkierten ATP mit den potentiellen Inhibitoren um die ATP-Bindetasche der Proteine. W\u00e4hrend der Masterarbeit wurden zehn potentielle Inhibitoren, die Geldanamycin- oder Reblastatin-Derivate sind, getestet. Ihre IC50-Werte lagen im Bereich zwischen 0,5 nM und 4 \u00b5M.","merchants_number":1,"ean":9783658088026,"category_id":103,"size":null,"min_price":61.60000000000000142108547152020037174224853515625,"low_price_merchant_id":1087639,"ID":4839041,"merchants":["dodax"],"brand":"undefined","slug":"protein-microarrays-fur-die-wirkstoffentwicklung","url":"\/unterhaltung\/produkt\/protein-microarrays-fur-die-wirkstoffentwicklung\/","low_price_merchant_name":null}


CHF 43.70
Peripheral Membrane Protein
High Quality Content by WIKIPEDIA articles! Peripheral membrane proteins are proteins that adhere only temporarily to the biological membrane with which they are associated. These molecules attach to integral membrane proteins, or penetrate the peripheral regions of the lipid bilayer. The regulatory protein subunits of many ion channels and transmembrane receptors, for example, may be... zur Produkt-Seite
5127410 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MjIzOTg4X0FtQTJiLXBuZw==!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MjIzOTg4X0FtQTJiLXBuZw==","post_title":"Peripheral Membrane Protein","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=24447689381&a=401125&m=11816&pref1=9786130506438","labels":[],"brand_id":1,"post_content":"High Quality Content by WIKIPEDIA articles! Peripheral membrane proteins are proteins that adhere only temporarily to the biological membrane with which they are associated. These molecules attach to integral membrane proteins, or penetrate the peripheral regions of the lipid bilayer. The regulatory protein subunits of many ion channels and transmembrane receptors, for example, may be defined as peripheral membrane proteins. In contrast to integral membrane proteins, peripheral membrane proteins tend to collect in the water-soluble component, or fraction, of all the proteins extracted during a protein purification procedure. Proteins with GPI anchors are an exception to this rule and can have purification properties similar to those of integral membrane proteins.","merchants_number":1,"ean":9786130506438,"category_id":103,"size":null,"min_price":43.7000000000000028421709430404007434844970703125,"low_price_merchant_id":1087639,"ID":5127410,"merchants":["dodax"],"brand":"undefined","slug":"peripheral-membrane-protein","url":"\/unterhaltung\/produkt\/peripheral-membrane-protein\/","low_price_merchant_name":null}



CHF 178.00
Protein Misfolding Diseases
Part I: Protein Biophysics Assays 1. Biophysical and Spectroscopic Methods for Monitoring Protein Misfolding and Amyloid Aggregation Joana S. Cristóvão, Bárbara J. Henriques, and Cláudio M. Gomes 2. Ultrasensitive RT-QuIC Seed Amplification Assays for Disease-Associated Tau, -Synuclein, and Prion Aggregates Eri Saijo, Bradley R. Groveman, Allison Kraus, Michael ... zur Produkt-Seite
4328120 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvYWIvN2YvZGUvNzEyMTc2NDIwMDAwMUFfNjAweDYwMC5qcGc=!aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvYWIvN2YvZGUvNzEyMTc2NDIwMDAwMUFfNjAweDYwMC5qcGd8fnxodHRwczovL2kud2VsdGJpbGQuZGUvcC9wcm90ZWluLW1pc2ZvbGRpbmctZGlzZWFzZXMtMjczNTgyNTM4LmpwZw==","post_title":"Protein Misfolding Diseases","deeplink":"https:\/\/cct.connects.ch\/tc.php?t=116298C1969900829T&subid=9781493988198&deepurl=https%3A%2F%2Feuniverse.ch%2Fbuecher%2Fmathematik-naturwissenschaft-technik%2Fbiologie%2F378767%2Fprotein-misfolding-diseases-methods-and-protocols%3FsPartner%3Dtoppreise","labels":[],"brand_id":1,"post_content":"Part I: Protein Biophysics Assays\u00a01. Biophysical and Spectroscopic Methods for Monitoring Protein Misfolding and Amyloid Aggregation\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Joana S. Crist\u00f3v\u00e3o, B\u00e1rbara J. Henriques, and Cl\u00e1udio M. Gomes\u00a02. Ultrasensitive RT-QuIC Seed Amplification Assays for Disease-Associated Tau, -Synuclein, and Prion Aggregates\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Eri Saijo, Bradley R. Groveman, Allison Kraus, Michael Metrick, Christina D. Orr\u00f9, Andrew G. Hughson, and Byron Caughey\u00a03. Vesicle-Based Assays to Study Membrane Interactions of Amyloid Peptides\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Ravit Malishev, Sofiya Kolusheva, and Raz Jelinek\u00a04. Differential Scanning Fluorimetry and Hydrogen Deuterium Exchange Mass Spectrometry to Monitor the Conformational Dynamics of NBD1 in Cystic Fibrosis\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Naoto Soya, Ariel Roldan, and Gergely L. Lukacs\u00a05. A Multipronged Method for Unveiling Subtle Structural-Functional Defects of Mutant Chaperone Molecules Causing Human Chaperonopathies\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Donatella Bulone, Pier Luigi San Biagio, Tatiana Qui\u00f1ones-Ruiz, Manuel Rosario-Alomar, Igor K. Lednev, Frank T. Robb,Everly Conway de Macario, and Alberto J.L. Macario\u00a06. High-Throughput Microplate-Based Fluorescence Assays for Studying Stochastic Aggregation of Superoxide Dismutase-1\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Alireza Abdolvahabi, Sanaz Rasouli, Corbin M. Croom, and Devon L. Plewman\u00a07. Methods for Structural Analysis of Amyloid Fibrils in Misfolding Diseases\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Devkee M. Vadukul, Youssra K. Al-Hilaly, and Louise C. Serpell\u00a08. Assays for Light Chain Amyloidosis Formation and Cytotoxicity\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Luis M. Blancas-Mejia, Pinaki Misra, Christopher J. Dick, Marta Marin Argany, Keely R. Redhage, Shawna A. Cooper, and Marina Ramirez-Alvarado\u00a0Part II: Cellular And Proteostasis Assays\u00a09. Monitoring Aggregate Clearance and Formation in Cell-Based Assays\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Evelien Eenjes, Young Joo Yang-Klingler, and Ai Yamamoto\u00a010. Monitoring Proteome Stress in Live Cells Using HaloTag-Based Fluorogenic Sensor\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Yu Liu, Matthew Fares, and Xin Zhang\u00a011. Quantification of Protein Aggregates Using Bimolecular Fluorescence Complementation\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Vibha Prasad and Aaron Voigt\u00a012. Screening Protein Aggregation in Cells Using Fluorescent Labels Coupled to Flow Cytometry\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Salvador Ventura and Susanna Navarro\u00a013. Induction of Cu\/Zn Superoxide Dismutase (SOD1) Aggregation in Living Cells\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Edward Pokrishevsky, Jeremy Nan, and Neil R. Cashman\u00a014. A Cell Model for HSP60 Deficiencies: Modeling Different Levels of Chaperonopathies Leading to Oxidative Stress and Mitochondrial Dysfunction\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Cagla C\u00f6mert, Paula Fernandez Guerra, and Peter Bross\u00a015. Super-Resolution Fluorescence Imaging of Mutant Huntingtin Aggregation in Cells\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Steffen J. Sahl and Willianne I.M. Vonk\u00a0Part III: Protein Folding Recovery and Correction Assays\u00a016. Thermal Shift and Stability Assays of Disease-Related Misfolded Proteins Using Differential Scanning Fluorimetry\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 T\u00e2nia G. Lucas, Cl\u00e1udio M. Gomes, and B\u00e1rbara J. Henriques\u00a017. Methods to Screen Compounds against Mutant p53 Misfolding and Aggregation for Cancer Therapeutics\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Giulia Diniz da Silva Ferretti, Danielly Ferraz da Costa, Jerson Lima da Silva, and Luciana Pereira Rangel\u00a018. Early Stage Discovery and Validation of Pharmacological Chaperones for the Correction of Protein Misfolding Diseases\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Oscar Aubi, Per M. Knappskog, and Aurora Martinez\u00a019. Constructing Kinetically Controlled Denaturation Isotherms of Folded Proteins Using Denaturant-Pulse Chaperonin Binding\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Pierce T. O'Neil, Alexandra J. Machen, Jackie A. Thompson, Wei Wang, Quyen Q. Hoang, Michael R. Baldwin, Karen R. Khar, John Karanicolas, and Mark T. Fisher\u00a020. In Vitro Prion Amplification Methodology for Inhibitor Screening\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Tuane Cristine R.G. Vieira and Jerson L. Silva\u00a021. SolubiS: Optimizing Protein Solubility by Minimal Point Mutations\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Rob van der Kant, Joost van Durme, Frederic Rousseau, and Joost Schymkowitz","merchants_number":2,"ean":9781493988198,"category_id":103,"size":null,"min_price":178,"low_price_merchant_id":70255345,"ID":4328120,"merchants":["euniverse","weltbild"],"brand":"undefined","slug":"protein-misfolding-diseases","url":"\/unterhaltung\/produkt\/protein-misfolding-diseases\/","low_price_merchant_name":"eUniverse"}



CHF 118.00
DNA-Protein Interactions
1. Electrophoretic Mobility Shift Assay Using Radiolabeled DNA Probes Dominic Poulin-Laprade and Vincent Burrus 2. In Vitro DNase I Footprinting Benoît P. Leblanc and Tom Moss 3. Determining the Architecture of a Protein/DNA Complex by Combining FeBABE Cleavage Analyses, 3-D Printed Structures, and the ICM Molsoft Program Tamara James, Meng-Lun Hsieh, ... zur Produkt-Seite
4908761 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9pLndlbHRiaWxkLmRlL3AvZG5hLXByb3RlaW4taW50ZXJhY3Rpb25zLTMyODA3Mjc5MC5qcGc=!aHR0cHM6Ly9pLndlbHRiaWxkLmRlL3AvZG5hLXByb3RlaW4taW50ZXJhY3Rpb25zLTMyODA3Mjc5MC5qcGd8fnxodHRwczovL29zMS5tZWluZWNsb3VkLmlvL2IxMDE1OC9tZWRpYS9pbWFnZS85Mi83NC8xOC81MjI5MjA5ODAwMDAxQV82MDB4NjAwLmpwZw==","post_title":"DNA-Protein Interactions","deeplink":"https:\/\/track.adtraction.com\/t\/t?a=1632201226&as=1592767275&t=2&tk=1&url=https:\/\/www.weltbild.ch\/artikel\/x\/_20948212-1","labels":[],"brand_id":1,"post_content":"1. Electrophoretic Mobility Shift Assay Using Radiolabeled DNA Probes Dominic Poulin-Laprade and Vincent Burrus 2. In Vitro DNase I Footprinting Beno\u00eet P. Leblanc and Tom Moss 3. Determining the Architecture of a Protein\/DNA Complex by Combining FeBABE Cleavage Analyses, 3-D Printed Structures, and the ICM Molsoft Program Tamara James, Meng-Lun Hsieh, Leslie Knipling, and Deborah Hinton 4. In Cellulo DNA Analysis: LMPCR Footprinting R\u00e9gen Drouin, Nathalie Bastien, Jean-Fran\u00e7ois Millau, Fran\u00e7ois Vigneault, and Isabelle Paradis 5. Southwestern Blotting Assay Yinshan Jia, Linda Nagore, and Harry Jarrett 6. Single-Molecule Approaches for the Characterization of Riboswitch Folding Mechanisms Julien Boudreault, D. Cibran Perez-Gonzalez, J. Carlos Penedo, and Daniel A. Lafontaine 7. Probing of Nascent Riboswitch Transcripts Adrien Chauvier and Daniel A. Lafontaine 8. Functional Studies of DNA-Protein Interactions Using FRET Techniques Simon Blouin, Timothy D. Craggs, Daniel A. Lafontaine, and J. Carlos Penedo 9. Precise Identification of Genome-Wide Transcription Start Sites in Bacteria by 5' Rapid Amplification of cDNA Ends (5'-RACE) Dominick Matteau and S\u00e9bastien Rodrigue 10. Analysis of DNA Supercoiling Induced by DNA-Protein Interactions David J. Clark and Beno\u00eet P. Leblanc 11. Precise Identification of DNA-Binding Proteins Genomic Location by Exonuclease Coupled Chromatin Immunoprecipitation (ChIP-exo) Dominick Matteau and S\u00e9bastien Rodrigue 12. The Cruciform DNA Mobility Shift Assay: A Tool to Study Proteins that Recognize Bent DNA Victor Y. Stefanovsky and Tom Moss 13. Individual and Sequential Chromatin Immunoprecipitation Protocols Mayra Furlan-Magaril and F\u00e9lix Recillas-Targa 14. Chromatin Endogenous Cleavage (ChEC) as a Method to Quantify Protein Interaction with Genomic DNA in Saccharomyces cerevisiae Virginia Babl, Ulrike St\u00f6ckl, Herbert Tschochner, Philipp Milkereit, and Joachim Griesenbeck 15. Selection and Validation of Spacer Sequences for CRISPR-Cas9 Genome Editing and Transcription Regulation in Bacteria Fr\u00e9d\u00e9ric Grenier, Jean-Fran\u00e7ois Lucier, and S\u00e9bastien Rodrigue 16. Detection of Short-Range DNA Interactions in Mammalian Cells Using High-Resolution Circular Chromosome Conformation Capture Coupled to Deep Sequencing Jean-Fran\u00e7ois Millau and Luc Gaudreau 17. Global Mapping of Open Chromatin Regulatory Elements by Formaldehyde-Assisted Isolation of Regulatory Elements Followed by Sequencing (FAIRE-seq) St\u00e9phanie Bianco, S\u00e9bastien Rodrigue, Bruce D. Murphy, and Nicolas G\u00e9vry 18. Aggregate and Heatmap Representations of Genome-Wide Localization Data Using VAP, a Versatile Aggregate Profiler Myl\u00e8ne Brunelle, Charles Coulombe, Christian Poitras, Marc-Antoine Robert, Alexei Nordell Markovits, Fran\u00e7ois Robert, and Pierre-\u00c9tienne Jacques 19. Circular Dichroism for the Analysis of Protein-DNA Interactions Garry Scarlett, Giuliano Siligardi, and Geoffrey G. Kneale 20. Quantitative Investigation of Protein-Nucleic Acid Interactions by Biosensor Surface Plasmon Resonance Shuo Wang, Gregory M.K. Poon, and W. David Wilson 21. Identification of Nucleic Acid High Affinity Binding Sequences of Proteins by SELEX Philippe Bouvet","merchants_number":2,"ean":9781493928767,"category_id":103,"size":null,"min_price":118,"low_price_merchant_id":27291482,"ID":4908761,"merchants":["weltbild","euniverse"],"brand":"undefined","slug":"dna-protein-interactions","url":"\/unterhaltung\/produkt\/dna-protein-interactions\/","low_price_merchant_name":"Weltbild"}


CHF 49.80
Protein Modelling & Molecular Docking
This book contain the detailed information on protein modelling using Modeller and molecular docking using Autodock. Further data analysis also has been explained in the result section. These techniques comes under the structural biology, a major branch of bioinformatics. With the increase in information about genome sequences, we need to use computational techniques which is cheap, l... zur Produkt-Seite
4600163 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI3OTk5MzUzX1l5UjFiLXBuZw==!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI3OTk5MzUzX1l5UjFiLXBuZw==","post_title":"Protein Modelling & Molecular Docking","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=22944150989&a=401125&m=11816&pref1=9783659154928","labels":[],"brand_id":1,"post_content":"This book contain the detailed information on protein modelling using Modeller and molecular docking using Autodock. Further data analysis also has been explained in the result section. These techniques comes under the structural biology, a major branch of bioinformatics. With the increase in information about genome sequences, we need to use computational techniques which is cheap, less time is consumed and efficient. A key goal of structural biology is to predict three dimensional structure of a protein. And then molecular docking to bind the protein molecule with ligand molecule. This information further can lead to the drug designing, depend upon the ligand used for docking what impact the ligand has on the protein molecule. Future investigations have been explained in the discussion chapter.","merchants_number":1,"ean":9783659154928,"category_id":103,"size":null,"min_price":49.7999999999999971578290569595992565155029296875,"low_price_merchant_id":1087639,"ID":4600163,"merchants":["dodax"],"brand":"undefined","slug":"protein-modelling-molecular-docking","url":"\/unterhaltung\/produkt\/protein-modelling-molecular-docking\/","low_price_merchant_name":null}


CHF 72.50
Activity-Based Protein Profiling
Until now, the only technology to directly demonstrate the role of switching between the active/inactive states of enzymes during plant defence is ABPP. Since the discovery of ABPP ten years ago, several ABPs have been developed and used in pharmacological and physiological studies. However, a broader use of ABPP is still limited by the availability of suitable probes. In an attempt t... zur Produkt-Seite
4987700 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MTc0ODA5X0FadmxqLXBuZw==!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MTc0ODA5X0FadmxqLXBuZw==","post_title":"Activity-Based Protein Profiling","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=24466077099&a=401125&m=11816&pref1=9783639227086","labels":[],"brand_id":1,"post_content":"Until now, the only technology to directly demonstrate the role of switching between the active\/inactive states of enzymes during plant defence is ABPP. Since the discovery of ABPP ten years ago, several ABPs have been developed and used in pharmacological and physiological studies. However, a broader use of ABPP is still limited by the availability of suitable probes. In an attempt to expand this limited applicability of ABPP, in this thesis, new types of ABPs were designed, synthesized and evaluated as potential probes for the study of plant-pathogen interactions. To develop effective ABPs in an efficient way, different design strategies have been tested and discussed accompanying with five questions, to generate different types of novel ABPs ...","merchants_number":1,"ean":9783639227086,"category_id":103,"size":null,"min_price":72.5,"low_price_merchant_id":1087639,"ID":4987700,"merchants":["dodax"],"brand":"undefined","slug":"activity-based-protein-profiling-1","url":"\/unterhaltung\/produkt\/activity-based-protein-profiling-1\/","low_price_merchant_name":null}



CHF 178.00
Computational Methods in Protein Evolution
Preface...Table of Contents...Contributing Authors...1.Predicting the Effect of Mutations on Protein Folding and Protein-Protein InteractionsAlexey Strokach, Carles Corbi-Verge, Joan Teyra, and Philip M. Kim2.Accurate Calculation of Free Energy Changes Upon Amino Acid MutationMatteo Aldeghi, Bert L. de Groot, and Vytautas Gapsys 3.Protocols for the Molecular Evolutionary Analysis of M... zur Produkt-Seite
4909148 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvOTAvMzAvMDMvNzA2NTEyMDYwMDAwMUFfNjAweDYwMC5qcGc=!aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvOTAvMzAvMDMvNzA2NTEyMDYwMDAwMUFfNjAweDYwMC5qcGd8fnxodHRwczovL2kud2VsdGJpbGQuZGUvcC9jb21wdXRhdGlvbmFsLW1ldGhvZHMtaW4tcHJvdGVpbi1ldm9sdXRpb24tMzMxNTk2NDM0LmpwZw==","post_title":"Computational Methods in Protein Evolution","deeplink":"https:\/\/cct.connects.ch\/tc.php?t=116298C1969900829T&subid=9781493987351&deepurl=https%3A%2F%2Feuniverse.ch%2Fbuecher%2Fmathematik-naturwissenschaft-technik%2Fbiologie%2F378742%2Fcomputational-methods-in-protein-evolution%3FsPartner%3Dtoppreise","labels":[],"brand_id":1,"post_content":"Preface...Table of Contents...Contributing Authors...1.Predicting the Effect of Mutations on Protein Folding and Protein-Protein InteractionsAlexey Strokach, Carles Corbi-Verge, Joan Teyra, and Philip M. Kim2.Accurate Calculation of Free Energy Changes Upon Amino Acid MutationMatteo Aldeghi, Bert L. de Groot, and Vytautas Gapsys\u00a03.Protocols for the Molecular Evolutionary Analysis of Membrane Protein Gene DuplicatesLaurel R. Yohe, Liang Liu, Liliana M. D\u00e1valos, and David A. Liberles4.Computational Prediction of De Novo Emerged Protein-Coding GenesNikolaos Vakirlis and Aoife McLysaght5.Coevolutionary Signals and Structure-Based Models for the Prediction of Protein Native ConformationsRicardo Nascimento dos Santos, Xianli Jiang, Leandro Mart\u00ednez, and Faruck Morcos6.Detecting Amino Acid Coevolution with Bayesian Graphical ModelsMariano Avino and Art F.Y. Poon7.Context-Dependent Mutation Effects in ProteinsFrank J. Poelwijk8.High-Throughput Reconstruction of Ancestral Protein Sequence, Structure, and Molecular FunctionKelsey Aadland, Charles Pugh, and Bryan Kolaczkowski9.Ancestral Sequence Reconstruction as a Tool for the Elucidation of a Stepwise Evolutionary AdaptationKristina Heyn and Rainer Merkl10.Enhancing Statistical Multiple Sequence Alignment and Tree Inference using Structural InformationJoseph L. Herman11.The Influence of Protein Stability on Sequence Evolution: Applications to Phylogenetic InferenceUgo Bastolla and Miguel Arenas12.Navigating Among Known Structures in Protein SpaceAya Narunsky, Nir Ben-Tal, and Rachel Kolodny13.A Graph-Based Approach for Detecting Sequence Homology in Highly Diverged Repeat-Protein FamiliesJonathan N. Wells and Joseph A. Marsh14.Exploring Enzyme Evolution from Changes in Sequence, Structure, and Function Jonathan D. Tyzack, Nicholas Furnham, Ian Sillitoe, Christine M. Orengo, and Janet M. Thornton15.Identification of Protein Homologs and Domain Boundaries by Iterative Sequence AlignmentDustin Schaeffer and Nick V. Grishin16.A Roadmap to Domain Based ProteomicsCarsten Kemena and Erich Bornberg-Bauer17.Modelling of Protein Tertiary and Quaternary Structures Based on Evolutionary InformationGabriel Studer, Gerardo Tauriello, Stefan Bienert, Andrew Waterhouse, Martino Bertoni, Lorenza Bordoli, Torsten Schwede, and Rosalba Lepore18.Interface-Based Structural Prediction of Novel Host-Pathogen Interactions Emine Guven-Maiorov, Chung-Jung Tsai, Buyong Ma, and Ruth Nussinov19.Predicting Functions of Disordered Proteins with MoRFpredChristopher Oldfield, Vladimir N. Uversky, and Lukasz Kurgan20.Exploring Protein Conformational DiversityAlexander Miguel Monzon, Maria Silvina Fornasari, Diego Javier Zea, and Gustavo Parisi21.High-Throughput Antibody Structure Modelling and Design using ABodyBuilder Jinwoo Leem and Charlotte M. Deane22.In Silico Directed Evolution using CADEEBeat Anton Amrein, Ashish Runthala, and Shina Caroline Lynn Kamerlin","merchants_number":2,"ean":9781493987351,"category_id":103,"size":null,"min_price":178,"low_price_merchant_id":70255345,"ID":4909148,"merchants":["euniverse","weltbild"],"brand":"undefined","slug":"computational-methods-in-protein-evolution","url":"\/unterhaltung\/produkt\/computational-methods-in-protein-evolution\/","low_price_merchant_name":"eUniverse"}


CHF 120.60
Lipid-mediated Protein Signaling
This book provides the most updated information of how membrane lipids mediate protein signaling from studies carried out in animal and plant cells. Also, there are some chapters that go beyond and expand these studies of protein-lipid interactions at the structural level. The book begins with a literature review from investigations associated to sphingolipids, followed by studies tha... zur Produkt-Seite
5016539 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIzMzUyNzUyX0tQcFk1Ry1wbmc=!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTIzMzUyNzUyX0tQcFk1Ry1wbmc=","post_title":"Lipid-mediated Protein Signaling","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=27224282807&a=401125&m=11816&pref1=9789400763302","labels":[],"brand_id":1,"post_content":"This book provides the most updated information of how membrane lipids mediate protein signaling from studies carried out in animal and plant cells. Also, there are some chapters that go beyond and expand these studies of protein-lipid interactions at the structural level. The book begins with a literature review from investigations associated to sphingolipids, followed by studies that describe the role of phosphoinositides in signaling and closing with the function of other key lipids in signaling at the plasma membrane and intracellular organelles.","merchants_number":1,"ean":9789400763302,"category_id":103,"size":null,"min_price":120.599999999999994315658113919198513031005859375,"low_price_merchant_id":1087639,"ID":5016539,"merchants":["dodax"],"brand":"undefined","slug":"lipid-mediated-protein-signaling","url":"\/unterhaltung\/produkt\/lipid-mediated-protein-signaling\/","low_price_merchant_name":null}


CHF 81.05
Heterochromatin Protein 1 (HP1 )
Heterochromatin protein 1 (HP1) proteins are fundamental units of heterochromatin packaging.In mammals,there are three HP1 homologues termed HP1 (Cbx5),HP1 (Cbx1) and HP1 (Cbx3).HP1 is the best characterized isoform.Murine HP1 is essential for organismal survival.This study demonstrates that Cbx1+/- and Cbx1-/- MEFs escape senescence crisis that is associated with chromosomal aberrati... zur Produkt-Seite
4355345 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MTQ1NDQwX3BZMUVxLXBuZw==!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MTQ1NDQwX3BZMUVxLXBuZw==","post_title":"Heterochromatin Protein 1 (HP1 )","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=22935771013&a=401125&m=11816&pref1=9783838123196","labels":[],"brand_id":1,"post_content":"Heterochromatin protein 1 (HP1) proteins are fundamental units of heterochromatin packaging.In mammals,there are three HP1 homologues termed HP1 (Cbx5),HP1 (Cbx1) and HP1 (Cbx3).HP1 is the best characterized isoform.Murine HP1 is essential for organismal survival.This study demonstrates that Cbx1+\/- and Cbx1-\/- MEFs escape senescence crisis that is associated with chromosomal aberrations.Telomeres of late passage Cbx1-\/- MEFs are longer than WT controls. Introduction of Cbx1-\/- mutation in cells expressing H-rasV12 oncogene did not result senescence bypass.K-rasV12 oncogene expression in Cbx1+\/- mice resulted in increased malignant adenocarcinomas.These data indicate that HP1 acts as a tumour suppressor.Other experiments showed that binding of HP1 to histone H3(HH3) is resistant to high salt concentrations.ITC experiments confirmed that binding affinity of HP1 for HH3 was 4 times higher than for H3K9me3.The high affinity binding of HP1 to the HH3 is shown to be stronger than the affinity to H3K9me3.Loss of this interaction might result in the perinatal lethal phenotype seen in Cbx1-\/- mice.","merchants_number":1,"ean":9783838123196,"category_id":103,"size":null,"min_price":81.0499999999999971578290569595992565155029296875,"low_price_merchant_id":1087639,"ID":4355345,"merchants":["dodax"],"brand":"undefined","slug":"heterochromatin-protein-1-hp1","url":"\/unterhaltung\/produkt\/heterochromatin-protein-1-hp1\/","low_price_merchant_name":null}



CHF 211.00
Bacterial Protein Secretion Systems
1. Identification of Protein Secretion Systems in Bacterial Genomes using MacSyFinder Sophie S Abby and Eduardo PC Rocha 2. Protein Sorting Prediction Henrik Nielsen 3. Cell FractionationMelissa Petiti, Laetitia Houot, and Denis Duché 4. Defining Lipoprotein Localisation by Fluorescence MicroscopyMaria Guillermina Casabona, Mylène Robert-Genthon, Didier Grunwald, and Ina Attrée 5... zur Produkt-Seite
4419596 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvNjcvYTMvMzUvNjUwNzkyNjMwMDAwMUFfNjAweDYwMC5qcGc=!aHR0cHM6Ly9vczEubWVpbmVjbG91ZC5pby9iMTAxNTgvbWVkaWEvaW1hZ2UvNjcvYTMvMzUvNjUwNzkyNjMwMDAwMUFfNjAweDYwMC5qcGd8fnxodHRwczovL2kud2VsdGJpbGQuZGUvcC9iYWN0ZXJpYWwtcHJvdGVpbi1zZWNyZXRpb24tc3lzdGVtcy0yNzM1NDU3MTcuanBn","post_title":"Bacterial Protein Secretion Systems","deeplink":"https:\/\/cct.connects.ch\/tc.php?t=116298C1969900829T&subid=9781493970315&deepurl=https%3A%2F%2Feuniverse.ch%2Fbuecher%2Fmathematik-naturwissenschaft-technik%2Fbiologie%2F377956%2Fbacterial-protein-secretion-systems-methods-and-protocols%3FsPartner%3Dtoppreise","labels":[],"brand_id":1,"post_content":"1. Identification of Protein Secretion Systems in Bacterial Genomes using MacSyFinder Sophie S Abby and Eduardo PC Rocha\u00a02. Protein Sorting Prediction\u00a0 Henrik Nielsen\u00a0 \u00a03. Cell FractionationMelissa Petiti, Laetitia Houot, and Denis Duch\u00e9 \u00a04. Defining Lipoprotein Localisation by Fluorescence MicroscopyMaria Guillermina Casabona, Myl\u00e8ne Robert-Genthon, Didier Grunwald, and Ina Attr\u00e9e \u00a05. Components Sub-cellular Localization: Identification of Lipoproteins using Globomycin and Radioactive PalmitateNienke Buddelmeijer \u00a06. Defining Membrane Protein Localization by Isopycnic Density GradientsRhys A. Dunstan, Iain D. Hay, and Trevor Lithgow\u00a07. Components Sub-cellular Localisation: Cell Surface ExposureAnna Konovalova\u00a08. Probing Inner Membrane Protein Topology by ProteolysisMaxence S. Vincent and Eric Cascales\u00a09. Mapping of Membrane Protein Topology by Substituted Cysteine Accessibility Method (SCAMTM)Mikhail Bogdanov\u00a010. Defining Membrane Protein Topology using pho-lac Reporter FusionsGouzel Karimova and Daniel Ladant\u00a011. In vivo and in vitro Protein-peptidoglycan InteractionsGang Li and S. Peter Howard\u00a012. Measure of Peptidoglycan Hydrolase ActivityYoann G. Santin and Eric Cascales\u00a013. Protein-protein Interaction: Bacterial Two-Hybrid Gouzel Karimova, Emilie Gauliard, Marilyne Davi, Scot P. Ouellette, and Daniel Ladant\u00a014. Protein-protein Interactions: Yeast two-hybridJer-Sheng Linand Erh-Min Lai\u00a015. Protein-protein Interactions: Cytology Two-hybridKrishnamohan Atmakuri\u00a016. Fusion Reporter Approaches to Monitor Transmembrane Helix Interactions in Bacterial MembranesLaureen Logger, Abdelrahim Zoued, and Eric Cascales17. Protein-protein Interactions: Co-immunoprecipitationJer-Sheng Linand Erh-Min Lai\u00a018. Protein-protein Interaction: Tandem Affinity Purification in BacteriaJulie P.M. Viala and Emmanuelle Bouveret\u00a019. Site-directed and Time-resolved Photocrosslinking in Cells Metabolically Labeled With Radioisotopes Raffaele Ieva\u00a020. Protein-protein Interactions: Pull-down Assays Arthur Louche, Suzana P. Salcedo, and Sarah Bigot\u00a021. Protein-protein interactions: Surface Plasmon ResonanceBadreddine Douzi\u00a022. Assessing Energy-dependent Protein Conformational Changes in the TonB SystemRay A. Larsen\u00a023. Defining Assembly Pathways by Fluorescence MicroscopyAbdelrahim Zouedand Andreas Diepold\u00a024. Large Complexes: Cloning Strategy, Production, and PurificationEric Durand and Roland Lloubes \u00a025. Shearing and Enrichment of Extracellular Type IV PiliAlba Katiria, Gonzalez Rivera, and Katrina T. Forest\u00a026. Blue Native PAGE Analysis of Bacterial Secretion ComplexesSusann Zilkenat, Tobias Dietsche, Julia V. Monjar\u00e1s Feria, Claudia E. Torres-Vargas, Mehari Tesfazgi Mebrhatu, and Samuel Wagner\u00a027. In situ Imaging of Bacterial Secretion Systems by Electron Cryo-tomographyGregor L. Weiss, Jo\u00e3o M. Medeiros, and Martin Pilhofer\u00a028. Structural Analysis of Protein Complexes by Cryo Electron MicroscopyTiago R. D. Costa, Athanasios Ignatiou, and Elena V. Orlova \u00a029. Bacterial Filamentous Appendages Investigated by Solid-state NMR SpectroscopyBirgit Habenstein and Antoine Loquet\u00a030. Identification\u00a0of Effectors:\u00a0 Precipitation of Supernatant MaterialNicolas Flaugnatti and Laure Journet\u00a031. Energy Requirements for Protein Secretion via the Flagellar type-III Secretion SystemMarc Erhardt\u00a032. Screening for Secretion of the Type VI Secretion Protein Hcp by Enzyme-Linked Immunosorbent Assay and Colony BlotBrent S. Weber, Pek Man Ly, and Mario F. Feldman33. Effector Translocation: Cya\u00a0Reporter AssaySuma Chakravarthy, Bethany Huot, and Brian H. Kvitko\u00a034. Monitoring Effector Translocation with the TEM-1 Beta-lactamase Reporter SystemJulie Allombert, Anne Vianney, and Xavier Charpentier\u00a035. Effector Translocation Assay: Differential SolubilizationIrina S. Franco, Sara V. Pais, Nuno Charro, and Lu\u00eds Jaime Mota\u00a036. Quantitative Determination of Anti-bacterial Activity during Bacterial Co-cultureJuliana Alcoforado Diniz, Birte Hollmann, and Sarah Coulthurst","merchants_number":2,"ean":9781493970315,"category_id":103,"size":null,"min_price":211,"low_price_merchant_id":70255345,"ID":4419596,"merchants":["euniverse","weltbild"],"brand":"undefined","slug":"bacterial-protein-secretion-systems","url":"\/unterhaltung\/produkt\/bacterial-protein-secretion-systems\/","low_price_merchant_name":"eUniverse"}



CHF 130.00
Expression des BVDV-E2-Proteins
Das Virus der bovinen Virusdiarrhoe (BVDV) und das bovine respiratorische Synzytialvirus (BRSV) sind wichtige virale Infektionserreger des Rindes. Ziel dieser Arbeit war die Entwicklung eines Kandidaten für einen neuen Impfstoff, welcher gegen beide Erkrankungen gerichtet ist. Das E2-Protein von BVDV ist das Hauptziel einer protektiven Immunantwort bei einer BVDV-Infektion. Es wurden ... zur Produkt-Seite
4766569 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/","post_title":"Expression des BVDV-E2-Proteins","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=36077244702&a=401125&m=13971&pref1=9783639066272","labels":[],"brand_id":1,"post_content":"Das Virus der bovinen Virusdiarrhoe (BVDV) und das bovine respiratorische Synzytialvirus (BRSV) sind wichtige virale Infektionserreger des Rindes. Ziel dieser Arbeit war die Entwicklung eines Kandidaten f\u00fcr einen neuen Impfstoff, welcher gegen beide Erkrankungen gerichtet ist. Das E2-Protein von BVDV ist das Hauptziel einer protektiven Immunantwort bei einer BVDV-Infektion. Es wurden verschiedene chim\u00e4re, trunkierte und mutierte Formen des E2-Proteins erstellt und die Expression, der Transport und die Lokalisation dieser Proteine untersucht. F\u00fcr die Expression wurden drei Vektoren verwendet: pTM1 als Plasmidvektor sowie das Virus der vesikul\u00e4ren Stomatitis (VSV) und BRSV als virale Vektoren. Die unterschiedlichen E2-Proteine wurden mit Hilfe der Plasmid- und Virusvektoren in Zellen stark exprimiert, wobei eine unterschiedliche zellul\u00e4re Verteilung zu beobachten war. Mit E2-exprimierendem BRSV ist es somit m\u00f6glich, mit einem rekombinantem Virus gegen zwei Erkrankungen zu immunisieren. Diese Arbeit richtet sich an Personen, die sich f\u00fcr Proteinexpression, Lokalisierung von Proteinen, Impfstoffentwicklung und die Herstellung von rekombinanten Viren interessieren.","merchants_number":1,"ean":9783639066272,"category_id":103,"size":null,"min_price":130,"low_price_merchant_id":70254503,"ID":4766569,"merchants":["orell-fuessli"],"brand":"undefined","slug":"expression-des-bvdv-e2-proteins","url":"\/unterhaltung\/produkt\/expression-des-bvdv-e2-proteins\/","low_price_merchant_name":"Orell F\u00fcssli"}



CHF 69.90
Evolution des lentiviralen Nef Proteins
AIDS ist eine der häufigsten Todesursachen weltweit und gehört zu den gravierendsten Infektionskrankheiten der Menschheit. Interessanter Weise sind verschiedene Affen mit HIV-1 verwandten Viren infiziert, entwickeln jedoch trotz effektiver Virsuvermehrung kein AIDS. Der Autor Michael Schindler fasst zunächst den aktuellen Wissensstand über die HIV Infektion und AIDS Entstehung zusamme... zur Produkt-Seite
4768989 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/","post_title":"Evolution des lentiviralen Nef Proteins","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=36063550995&a=401125&m=13971&pref1=9783639018226","labels":[],"brand_id":1,"post_content":"AIDS ist eine der h\u00e4ufigsten Todesursachen weltweit und geh\u00f6rt zu den gravierendsten Infektionskrankheiten der Menschheit. Interessanter Weise sind verschiedene Affen mit HIV-1 verwandten Viren infiziert, entwickeln jedoch trotz effektiver Virsuvermehrung kein AIDS. Der Autor Michael Schindler fasst zun\u00e4chst den aktuellen Wissensstand \u00fcber die HIV Infektion und AIDS Entstehung zusammen. Dabei gibt er einen \u00dcberblick \u00fcber die Entdeckung und Epidemiologie des Virus, den Ursprung von HIV, die AIDS-Pathogenese und die Rolle des viralen Nef Proteins. Im zweiten Teil wird aufgrund wissenschaftlicher Experimente eine funktionelle Ver\u00e4nderung im Nef Protein identifiziert und charakterisiert. Diese tritt nur bei HIV-1 und seinen Vorl\u00e4ufern auf und k\u00f6nnte eine Ursache f\u00fcr die Aggressivit\u00e4t des Virus im Menschen sein. Dieses Buch richtet sich sowohl an Fachpublikum mit fundiertem wissenschaftlichem Grundwissen, als auch an interessierte Naturwissenschaftler, die sich intensiver mit dem Thema AIDS Entstehung und HIV Infektion auseinander setzen wollen.","merchants_number":1,"ean":9783639018226,"category_id":103,"size":null,"min_price":69.900000000000005684341886080801486968994140625,"low_price_merchant_id":70254503,"ID":4768989,"merchants":["orell-fuessli"],"brand":"undefined","slug":"evolution-des-lentiviralen-nef-proteins","url":"\/unterhaltung\/produkt\/evolution-des-lentiviralen-nef-proteins\/","low_price_merchant_name":"Orell F\u00fcssli"}



CHF 236.00
AMP-activated Protein Kinase
zur Produkt-Seite
4804330 {"price-changing":0,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9pLndlbHRiaWxkLmRlL3AvYW1wLWFjdGl2YXRlZC1wcm90ZWluLWtpbmFzZS0zNzMwMzU4NzcuanBn!aHR0cHM6Ly9pLndlbHRiaWxkLmRlL3AvYW1wLWFjdGl2YXRlZC1wcm90ZWluLWtpbmFzZS0zNzMwMzU4NzcuanBn","post_title":"AMP-activated Protein Kinase","deeplink":"https:\/\/track.adtraction.com\/t\/t?a=1632201226&as=1592767275&t=2&tk=1&url=https:\/\/www.weltbild.ch\/artikel\/x\/_26814123-1","labels":[],"brand_id":1,"post_content":"","merchants_number":1,"ean":9783319828640,"category_id":103,"size":null,"min_price":236,"low_price_merchant_id":27291482,"ID":4804330,"merchants":["weltbild"],"brand":"undefined","slug":"amp-activated-protein-kinase","url":"\/unterhaltung\/produkt\/amp-activated-protein-kinase\/","low_price_merchant_name":"Weltbild"}


CHF 47.40
Efficient Two-Stage Model for Predicting Protein-Protein Interactions
Genome sequencing have identified many predictedproteins with unknown biological functions. Protein interactionnetworks link proteins/genes together, provide a global context forinteracting proteins, and enable studies at the systems level.High throughput methods were developed to detect protein-proteininteractions. However, current techniques show high levels of falsepositives and fa... zur Produkt-Seite
4746941 {"price-changing":null,"image":"https:\/\/image.vergleiche.ch\/small\/aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MjgzOTMwXzhHTUU0LXBuZw==!aHR0cHM6Ly9jNC1zdGF0aWMuZG9kYXguY29tL3YyLzE4MC0xODAtMTI4MjgzOTMwXzhHTUU0LXBuZw==","post_title":"Efficient Two-Stage Model for Predicting Protein-Protein Interactions","deeplink":"https:\/\/www.awin1.com\/pclick.php?p=24465033041&a=401125&m=11816&pref1=9783639118582","labels":[],"brand_id":1,"post_content":"Genome sequencing have identified many predictedproteins with unknown biological functions. Protein interactionnetworks link proteins\/genes together, provide a global context forinteracting proteins, and enable studies at the systems level.High throughput methods were developed to detect protein-proteininteractions. However, current techniques show high levels of falsepositives and false negatives. They are also labor intensive andexpensive to perform. Computational methods are needed to reducetesting space and enhance testing efficiency. In this work, atwo-stage statistical scoring model was built to assignconfidence scores to fruit fly yeast two-hybrid interactions. Highconfidence predictions are significantly enriched with biologicallymeaningful interactions. Cross-validation showed good prediction performance,which were also validated by independent data sources. Weobtained 24798 new interactions involving 4702 proteins. The work shouldbe especially interesting to researchers in interactome or systemsbiology fields. It also appeals to professionals practicing machinelearning or data mining in computational biology and bioinformatics.","merchants_number":1,"ean":9783639118582,"category_id":103,"size":null,"min_price":47.39999999999999857891452847979962825775146484375,"low_price_merchant_id":1087639,"ID":4746941,"merchants":["dodax"],"brand":"undefined","slug":"efficient-two-stage-model-for-predicting-protein-protein-interactions","url":"\/unterhaltung\/produkt\/efficient-two-stage-model-for-predicting-protein-protein-interactions\/","low_price_merchant_name":null}


CHF 97.10
Rezeptorlipide zur Assemblierung von Proteinen auf Oberflächen
In dieser Arbeit wurden Lipidrezeptoren auf Cyclam- Basis zur Erkennung und Immobilisierung von basischen und Arginin-getaggten Proteinen auf lipidischen Oberflächen (Lipiddoppelschichten) synthetisiert und untersucht. Als Bindungseinheiten wurden dabei Bisphosphonate eingesetzt. Mit der Langmuir-Blodgett-Technik (Filmwaage) wurden erste Bindungsstudien an selbstassemblierten Lipidmon... zur Produkt-Seite
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CHF 170.90
Proteine - nutritive und funktionelle Eigenschaften
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CHF 89.90
Analyse des tumorrelevanten Proteins Survivin
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CHF 59.90
Protein Toxins in Modeling Biochemistry
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CHF 177.00
BCL 2 Protein Family
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Lipid-Protein Interactions
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Peripheral Membrane Protein
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Genome sequencing have identified many predictedproteins with unknown biological functions. Protein interactionnetworks link proteins/genes togethe...
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