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008 111024s2012 fluadf sb 001 0 eng d
020 _a9781439839140 (ebook : PDF)
040 _aFlBoTFG
_cFlBoTFG
090 _aQP551
_b.T44 2012
092 _a612.01575
_bT411
245 0 0 _aThermostable proteins
_h[electronic resource] :
_bstructural stability and design /
_c[edited by] Srikanta Sen, Lennart Nilsson.
260 _aBoca Raton :
_bCRC Press,
_c2012.
300 _axii, 159, [16] p. of plates :
_bill. (some col.).
504 _aIncludes bibliographical references and index.
505 0 _ach. 1. Delineation of the conformational thermostability of hyperthermophilic proteins based on structural and biophysical analyses / Atsushi Mukaiyama and Kazufumi Takano -- ch. 2. Role of packing, hydration, and fluctuations on thermostability / Fabio Sterpone and Simone Melchionna -- ch. 3. Analyzing protein rigidity for understanding and improving thermal adaptation / Doris L. Klein, Sebastian Radestock, and Holger Gohlke -- ch. 4. Thermostable subtilases (subtilisin-like serine proteinases) / Magn�us M. Kristj�ansson -- ch. 5. Combined computational and experimental approaches to sequence-based design of protein thermal stability / Julie C. Mitchell ... [et al.] -- ch. 6. Designing thermophilic proteins : a structure-based computational approach / Sohini Basu and Srikanta S
520 _a"Thermostable Proteins: Structural Stability and Design provides a comprehensive, updated account of the physical basis of enhanced stability of thermophilic proteins and the design of tailor-made thermostable proteins, paving the way for their possible industrial applications. This book is devoted to understanding the survival mechanisms of "thermophilic life forms" at the molecular level with an emphasis on design strategies.The review chapters presented in Thermostable Proteins span a wide range of protein thermostability research. Basic structural, thermodynamic, and kinetic principles are explained and molecular strategies for the adaptation to high temperatures are delineated. In addition, this book covers: computing and simulation methods in current and future thermostability research, especially in nonempirical situations, how rigidity theory is used to improve the thermal adaptation of mesophiles Subtilisin-like serine proteases and their significant engineering applications. The state of knowledge concerning structure function relations and the origins of their structural stability. Computational and experimental approaches for the design of proteins with increased thermal stability based on sequences or three-dimensional structures. Understanding the molecular basis of how thermostable and hyperthermostable proteins gain and maintain their stability and biological function at high temperatures remains an important scientific challenge. A more detailed knowledge of protein stability not only deepens our understanding of protein structure but also helps in obtaining insights into processes that drive protein activities folding, unfolding, and misfolding essential to biological function"--Provided by publish
530 _aAlso available in print editi
538 _aMode of access: World Wide W
650 _aProteins
_xConformati
650 _aProtei
655 _aElectronic books.
_2l
700 _aSen, Srikan
700 _aNilsson, Lennart,
_d1952 Nov.
776 _z9781439839133 (hardcover : alk. pap
856 _uhttp://marc.crcnetbase.com/isbn/9781439839140
_qapplication/PDF
_zDistributed by publisher. Purchase or institutional license may be required for acce
999 _c15685
_d15685