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Proteins continuously interact with each other to determine cell fate. Consequently, an examination of just when such protein-protein interactions occur and how they are controlled is essential for understanding the molecular mechanism of biological processes, elucidating the molecular basis of diseases, and identifying potential targets for therapeutic interventions. In Protein-Protein Interactions: Methods and Applications, leading experts describe in detail their highly successful biochemical, biophysical, genetic, and computational techniques for studying these interactions. Their readily reproducible methods demonstrate how to identify protein interaction partners, qualitatively or quantitatively measure protein-protein interactions, monitor protein-protein interactions as they occur in living cells, and determine interaction interfaces. The techniques described utilize a variety of cutting-edge technologies, including surface plasmon resonance (SRP), fluorescence resonance energy transfer (FRET), fluorescence polarization (FP), isothermal titration calorimetry (ITC), circular dichroism (CD), protein fragment complementation assays (PCA), various two-hybrid systems, and proteomics- and bioinformatics-based approaches, such as the Scansite program for computational analysis. Each time-tested protocol includes a background introduction outlining the principle behind the technique, lists of equipment and reagents, and tips on troubleshooting and avoiding known pitfalls. Authoritative and highly practical, Protein-Protein Interactions: Methods and Applications offers both beginning and experienced investigators a full range of the powerful tools needed for deciphering how proteins interact to form biological networks, as well as for unraveling protein-protein interactions in disease in the search for novel therapeutic targets.
Protein Binding --- Proteins --- Protein-protein interactions --- Interactions protéine-protéine --- physiology --- metabolism --- Laboratory manuals. --- Manuels de laboratoire --- Electronic books. -- local. --- Protein-protein interactions -- Laboratory manuals. --- Proteins -- Metabolism -- Laboratory manuals. --- Metabolic Phenomena --- Publication Formats --- Biochemical Processes --- Biological Science Disciplines --- Amino Acids, Peptides, and Proteins --- Chemical Processes --- Phenomena and Processes --- Biochemical Phenomena --- Natural Science Disciplines --- Publication Characteristics --- Chemicals and Drugs --- Chemical Phenomena --- Disciplines and Occupations --- Laboratory Manuals --- Physiology --- Metabolism --- Chemistry --- Biology --- Human Anatomy & Physiology --- Health & Biological Sciences --- Physical Sciences & Mathematics --- Animal Biochemistry --- Biology - General --- Biochemistry --- Interactions protéine-protéine --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Interactions, Protein-protein --- Protein interactions --- Molecular association --- Biochemistry. --- Biochemistry, general. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Medical sciences --- Composition
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Advances in chemistry, biology and genomics coupled with laboratory automation and computational technologies have led to the rapid emergence of the multidisciplinary field of chemical genomics. This edited text, with contributions from experts in the field, discusses the new techniques and applications that help further the study of chemical genomics. The beginning chapters provide an overview of the basic principles of chemical biology and chemical genomics. This is followed by a technical section that describes the sources of small-molecule chemicals; the basics of high-throughput screening technologies; and various bioassays for biochemical-, cellular- and organism-based screens. The final chapters connect the chemical genomics field with personalized medicine and the druggable genome for future discovery of new therapeutics. This book will be valuable to researchers, professionals and graduate students in many fields, including biology, biomedicine and chemistry.
Chemogenomics. --- Chemistry. --- Physical sciences --- Chemical genomics --- Genomes --- Biochemical genetics --- Chemicals --- Effect of chemicals on --- Physiological effect
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In recent years, our understanding of the protein-protein interaction landscape has expanded significantly. Growing interest in analyzing and targeting protein-protein interactions has resulted in an increased need for detailed methodologies to interrogate and monitor protein-protein interactions. To meet this need, Protein-Protein Interactions: Methods and Applications has been updated and expanded. The second edition includes core technological platforms used to study protein-protein interactions, and cutting-edge technologies that reflect recent scientific advances and the emerging focus on therapeutic discovery. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of necessary materials and reagents, step-by-step laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. These well-detailed protocols describe methods for identifying protein-protein interaction partners, analyzing protein-protein interactions quantitatively and qualitatively, monitoring protein-protein interactions in live cells, and predicting and determining interaction interfaces. Authoritative and cutting-edge, Protein-Protein Interactions: Methods and Applications, Second Edition is a valuable resource that will enable readers to elucidate the mechanisms of protein-protein interactions, determine the role of these interactions in diverse biological processes, and target protein-protein interactions for therapeutic discovery. .
Biochemistry. --- Protein Science. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Composition
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