Protein Physics: A Course of Lectures

Finkelstein, Alexei V.; Ptitsyn, Oleg

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Table of contents
  • Cover
  • Copyright Pageiv
  • CONTENTSv
  • Prefacexiii
  • Forewordxvii
  • Acknowledgmentsxix
  • Part I: INTRODUCTION1
  • Lecture 13
  • Part II: ELEMENTARY INTERACTIONS IN AND AROUND PROTEINS13
  • Lecture 215
  • Lecture 323
  • Lecture 433
  • Lecture 543
  • Lecture 657
  • Part III: SECONDARY STRUCTURES OF POLYPEPTIDE CHAINS73
  • Lecture 775
  • Lecture 885
  • Lecture 9103
  • Lecture 10117
  • Part IV: PROTEIN STRUCTURES125
  • Lecture 11127
  • Lecture 12135
  • Lecture 13145
  • Lecture 14161
  • Lecture 15175
  • Lecture 16189
  • Part V: COOPERATIVE TRANSITIONS IN PROTEIN MOLECULES205
  • Lecture 17207
  • Lecture 18227
  • Lecture 19239
  • Lecture 20251
  • Lecture 21263
  • Part VI: PREDICTION AND DESIGN OF PROTEIN STRUCTURE279
  • Lecture 22281
  • Lecture 23297
  • Part VII: PHYSICAL BACKGROUND OF PROTEIN FUNCTIONS311
  • Lecture 24313
  • Lecture 25331
  • Afterword345
  • Recommended reading347
  • Index349
Book details
  • Vendor Elsevier S & T
  • SKU 9780122567810
  • ISBN-13 9780080492186
  • Author Finkelstein, Alexei V.; Ptitsyn, Oleg
  • Category Science
  • Subject Biochemistry

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Protein Physics is a lively presentation of the most general problems of protein structure, folding and function from the physics and chemistry perspective, based on lectures given by the authors. It deals with fibrous, membrane and, most of all, with the best studied water-soluble globular proteins, in both their native and denatured states. The major aspects of protein physics are covered systematically, physico-chemical properties of polypeptide chains; their secondary structures; tertiary structures of proteins and their classification; conformational transitions in protein molecules and their folding; intermediates of protein folding; folding nuclei; physical backgrounds of coding the protein structures by their amino acid sequences and protein functions in relation to the protein structure. The book will be of interest to undergraduate and graduate level students and researchers of biophysics, biochemistry, biology and material science.

* Designed for a wide audience of undergraduate and graduate students, as well as being a reference for researchers in academia and industry
* Covers the most general problems of protein structure, folding, and function and introduces the key concepts and theories
* Deals with fibrous, membrane and especially water-soluble globular proteins, in both their native and denatured states
* Summarizes and presents in a systematic form the results of several decades of world wide fundamental research on protein physics, structure and folding
* Examines experimental data on protein structure in the post-genome era