Here, researchers review the latest breakthroughs in protein research. Their contributions explore emerging principles and techniques and survey important classes of proteins that will play key roles in the field's future. Articles examine the possibility of a Boltzman-like distribution in protein substructures, the new technique of Raman spectroscopy, and compact intermediate states of protein folding. This well-illustrated volume also features coverage of proteins that bind nucleic acids.
Le informazioni nella sezione "Riassunto" possono far riferimento a edizioni diverse di questo titolo.
Boltzmannlike Statistics of Protein Architectures: Origin and Consequences; A.V. Finkelstein, et al. Compact Intermediate States in Protein Folding; A.L. Fink Raman Spectroscopy of Proteins and Their Assemblies; T. Miura, G.J. Thomas Fluorescence Spectroscopic Studies of Proteins; S. Roy, B. Bhattacharyya Pyrene Excimer Fluorescence as a Probe of Protein Conformational Change; S.S. Lehrer Differential Scanning Calorimetry of Proteins; J. SanchezRuiz Affinity Labeling and Related Approaches to Targeting Specific Enzyme Sites; R.F. Colman Tryptophan Synthetase: Structure, Function, and Engineering; E.W. Miles Structure and Function in the Tubulin Dimer and the Role of the Acidic Carboxyl Terminus; D.L Sackett Role of Allosteric Changes in Cyclic AMP Receptor Protein Function; S. Adhya, et al. A Family of RNA Binding Enzymes: AminoacyltRNA Synthetases; Y. Mechulam, et al. Funtions and Structures of Ribonuclease H Enzymes; S. Kanaya, M. Ikehara Index.
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
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