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使用CcpNmr分析进行结构计算、精修和验证。

Structure calculation, refinement and validation using CcpNmr Analysis.

作者信息

Skinner Simon P, Goult Benjamin T, Fogh Rasmus H, Boucher Wayne, Stevens Tim J, Laue Ernest D, Vuister Geerten W

机构信息

Department of Biochemistry, University of Leicester, Lancaster Road, Leicester LE1 9HN, England.

Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1GA, England.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Jan 1;71(Pt 1):154-61. doi: 10.1107/S1399004714026662.

Abstract

CcpNmr Analysis provides a streamlined pipeline for both NMR chemical shift assignment and structure determination of biological macromolecules. In addition, it encompasses tools to analyse the many additional experiments that make NMR such a pivotal technique for research into complex biological questions. This report describes how CcpNmr Analysis can seamlessly link together all of the tasks in the NMR structure-determination process. It details each of the stages from generating NMR restraints [distance, dihedral, hydrogen bonds and residual dipolar couplings (RDCs)], exporting these to and subsequently re-importing them from structure-calculation software (such as the programs CYANA or ARIA) and analysing and validating the results obtained from the structure calculation to, ultimately, the streamlined deposition of the completed assignments and the refined ensemble of structures into the PDBe repository. Until recently, such solution-structure determination by NMR has been quite a laborious task, requiring multiple stages and programs. However, with the new enhancements to CcpNmr Analysis described here, this process is now much more intuitive and efficient and less error-prone.

摘要

CcpNmr分析为生物大分子的核磁共振化学位移归属和结构测定提供了一个简化的流程。此外,它还包含用于分析许多其他实验的工具,这些实验使核磁共振成为研究复杂生物学问题的关键技术。本报告描述了CcpNmr分析如何能够无缝地将核磁共振结构测定过程中的所有任务联系在一起。它详细介绍了从生成核磁共振约束条件(距离、二面角、氢键和残余偶极耦合(RDCs))的各个阶段,将这些约束条件导出到结构计算软件(如CYANA或ARIA程序)并随后重新导入,分析和验证从结构计算中获得的结果,最终将完整的归属和精修后的结构集合简化存入PDBe数据库。直到最近,通过核磁共振进行这种溶液结构测定一直是一项相当繁琐的任务,需要多个阶段和程序。然而,有了这里所述的对CcpNmr分析的新改进,现在这个过程更加直观、高效且不易出错。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f83/4304695/ae6849d1ad53/d-71-00154-fig1.jpg

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