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基于剩余偶极耦合的蛋白质主链运动的无模型分析

Model-free analysis of protein backbone motion from residual dipolar couplings.

作者信息

Peti Wolfgang, Meiler Jens, Brüschweiler Rafael, Griesinger Christian

机构信息

Max-Planck Institute for Biophysical Chemistry, Am Fassberg 11, D-37077 Göttingen, Germany.

出版信息

J Am Chem Soc. 2002 May 22;124(20):5822-33. doi: 10.1021/ja011883c.

Abstract

On the basis of the measurement of NH residual dipolar couplings (RDCs) in 11 different alignment media, an RDC-based order parameter is derived for each residue in the protein ubiquitin. Dipolar couplings are motionally averaged in the picosecond to millisecond time range and, therefore, reflect motion slower than the inverse overall tumbling correlation time of the protein. It is found that there is considerable motion that is slower than the correlation time and could not be detected with previous NMR methodology. Amplitudes and anisotropies of the motion can be derived from the model-free analysis. The method can be applied provided that at least five sufficiently different alignment media can be found for the biomolecule under investigation.

摘要

基于在11种不同取向介质中对NH剩余偶极耦合(RDC)的测量,为蛋白质泛素中的每个残基推导了基于RDC的序参数。偶极耦合在皮秒到毫秒的时间范围内进行动态平均,因此反映的运动比蛋白质的整体翻转相关时间的倒数慢。研究发现,存在相当多比相关时间慢的运动,而这些运动是以前的核磁共振方法无法检测到的。运动的幅度和各向异性可以通过无模型分析得出。只要能为所研究的生物分子找到至少五种足够不同的取向介质,该方法就可以应用。

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