420 Pages
by CRC Press

438 Pages
by CRC Press

420 Pages
by CRC Press

Human cells produce at least 30,000 different proteins. Each has a specific function characterized by a unique sequence and native conformation that allows it to perform that function. While research in this post-genomic era has created a deluge of invaluable information, the field has lacked for an authoritative introductory text needed to inform researchers and students in all of those fields... Read more

Introduction. Amino Acids. Noncovalent Interactions. Structural Organization of Proteins. The Biosynthesis of Proteins. Posttranslational Modifications. Protein Folding. Intracellular Sorting of Proteins. Protein Turnover. Purification and Characterization of Proteins. Crystallography and X-Ray Diffraction. Optical Spectroscopy. Nuclear Magnetic Resonance (NMR). Methods to Follow Protein Folding. Mass Spectrometry. Chemical Synthesis of Peptides and Proteins. Protein Engineering and Gene Silencing. Protein–Ligand Interactions. Sequence Analysis and Function Prediction. Protein Structure Prediction. Proteomics. Enzymes. Nucleic Acid–Binding Proteins. Cell Surface Receptors and Signaling. Membrane Proteins. Antibodies. Fibrous Proteins. Selected Classes of Bioactive Peptides. Misfolding-Based Diseases. Miscleavage-Based Diseases. Missequence-Based Diseases. Peptides and Proteins as Drugs.



 

Biography

Langel, Ulo; Cravatt, Benjamin F.; Graslund, Astrid; von Heijne, N.G.H. ; Zorko, Matjaz; Land, Tiit; Niessen, Sherry