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1 | Overview: Conformational Changes in Biological Macromolecules | 1 |
2 | Methods and Algorithms to Analyze Conformational Change | 11 |
3 | An Automatic and Accurate Method for Comparing Structures that Undergo Conformational Changes | 31 |
4 | Structural Mechanisms for Protein Motions | 59 |
5 | A Protein Motions Database | 81 |
6 | Periplasmic Binding Proteins: Structural and Functional Aspects of the Hinge-Bending Motion | 91 |
7 | Conformational Flexibility in Antibodies and Their Fragments | 109 |
8 | Conformational Perspectives and DNA-Bound Forms of the TATA-Box Binding Protein | 135 |
9 | Annexin Mobility: A Key to Understanding Annexin Function? | 149 |
10 | Structural Changes in Influenza Hemagglutinin at the pH of Membrane Fusion | 171 |
Appendix A | Detailed Contents of a Database Entry | 185 |
Appendix B | What Version 1.5 (April 1995) of the Database Contains | 189 |
Index | 211 |
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Add Protein motions, Stanford University, CA. Molecular Biology Intelligence Unit Series. Research on protein motion, for investigators. Examines the collection, classification, and postulation of mechanisms for dynamac motion. Discusses analytical tools and classification sc, Protein motions to the inventory that you are selling on WonderClubX
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Add Protein motions, Stanford University, CA. Molecular Biology Intelligence Unit Series. Research on protein motion, for investigators. Examines the collection, classification, and postulation of mechanisms for dynamac motion. Discusses analytical tools and classification sc, Protein motions to your collection on WonderClub |