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Protein Nmr Techniques 2nd Edition Lorraine Hewitt James M Mcdonnell Auth

  • SKU: BELL-1315162
Protein Nmr Techniques 2nd Edition Lorraine Hewitt James M Mcdonnell Auth
$ 31.00 $ 45.00 (-31%)

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Protein Nmr Techniques 2nd Edition Lorraine Hewitt James M Mcdonnell Auth instant download after payment.

Publisher: Humana Press
File Extension: PDF
File size: 7.14 MB
Pages: 487
Author: Lorraine Hewitt, James M. McDonnell (auth.), A. Kristina Downing (eds.)
ISBN: 9781588292469, 1588292460
Language: English
Year: 2004
Edition: 2

Product desciption

Protein Nmr Techniques 2nd Edition Lorraine Hewitt James M Mcdonnell Auth by Lorraine Hewitt, James M. Mcdonnell (auth.), A. Kristina Downing (eds.) 9781588292469, 1588292460 instant download after payment.

Carrying on in the tradition of its much praised earlier edition, A. Kristina Downing has selected new protocols describing the many recent advances in NMR methodology that are revolutionizing the field. Described in step-by-step detail by established hands-on experts, these readily reproducible techniques include methods for high-level recombinant protein expression using sophisticated isotopic labeling strategies, TROSY methods for the study of structure and dynamics, and methods for the acquisition and interpretation of residual dipolar coupling data. There are also applications of dynamics measurements on multiple timescales, new developments in NMR data analysis, structure calculation protocols, and a comprehensive chapter on solid-state methods for the study of membrane proteins. The protocols follow the successful Methods in Molecular Biology™ series format, each offering detailed laboratory instructions, an introduction outlining the principle behind the technique, lists of equipment and reagents, and tips on troubleshooting and avoiding known pitfalls.
State-of-the-art and highly practical, Protein NMR Techniques, 2nd Ed., makes accessible to all NMR laboratories proven techniques that are powerfully transforming the speed, accuracy, and size limit of our ability to characterize biological macromolecules.

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