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各向异性的转动扩散、偶极-偶极交叉相关 NMR 弛豫和蛋白质中键矢量之间的角度。

Anisotropy of rotational diffusion, dipole-dipole cross-correlated NMR relaxation and angles between bond vectors in proteins.

机构信息

Département de Chimie, associé au CNRS, Ecole Normale Supérieure, Paris, France.

出版信息

Chemphyschem. 2001 Sep 17;2(8-9):539-43. doi: 10.1002/1439-7641(20010917)2:8/9<539::AID-CPHC539>3.0.CO;2-M.

Abstract

Cross correlations between the fluctuations of dipolar (13)C(α)-(1)H(α) interactions yield information about the relative orientation of successive (13)C(α)-(1)H(α) bond vectors in proteins, in turn providing a direct handle on their structure and dynamics in solution. However, overall anisotropic reorientation must be taken into account in the interpretation of cross-correlation rates. The protein shown, human ubiquitin, has amino acid residues in white where the cross-correlation rates deviate from those predicted for a rigid structure.

摘要

偶极子 (13)C(α)-(1)H(α) 相互作用的波动之间的交叉相关提供了关于蛋白质中连续 (13)C(α)-(1)H(α) 键矢量相对取向的信息,进而直接提供了其在溶液中的结构和动力学的信息。然而,在解释交叉相关速率时,必须考虑整体各向异性重取向。所示的蛋白质是人泛素,白色的氨基酸残基的交叉相关速率偏离了刚性结构的预测值。

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