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在REFMAC5中同时使用溶液核磁共振和X射线数据进行联合精修/检测结构差异。

Simultaneous use of solution NMR and X-ray data in REFMAC5 for joint refinement/detection of structural differences.

作者信息

Rinaldelli Mauro, Ravera Enrico, Calderone Vito, Parigi Giacomo, Murshudov Garib N, Luchinat Claudio

机构信息

Center for Magnetic Resonance (CERM), University of Florence, Via L. Sacconi 6, 50019 Sesto Fiorentino (FI), Italy.

MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge Biomedical Campus, Cambridge CB2 0QH, England.

出版信息

Acta Crystallogr D Biol Crystallogr. 2014 Apr;70(Pt 4):958-67. doi: 10.1107/S1399004713034160. Epub 2014 Mar 19.

Abstract

The program REFMAC5 from CCP4 was modified to allow the simultaneous use of X-ray crystallographic data and paramagnetic NMR data (pseudocontact shifts and self-orientation residual dipolar couplings) and/or diamagnetic residual dipolar couplings. Incorporation of these long-range NMR restraints in REFMAC5 can reveal differences between solid-state and solution conformations of molecules or, in their absence, can be used together with X-ray crystallographic data for structural refinement. Since NMR and X-ray data are complementary, when a single structure is consistent with both sets of data and still maintains reasonably `ideal' geometries, the reliability of the derived atomic model is expected to increase. The program was tested on five different proteins: the catalytic domain of matrix metalloproteinase 1, GB3, ubiquitin, free calmodulin and calmodulin complexed with a peptide. In some cases the joint refinement produced a single model consistent with both sets of observations, while in other cases it indicated, outside the experimental uncertainty, the presence of different protein conformations in solution and in the solid state.

摘要

CCP4的REFMAC5程序经过修改,以允许同时使用X射线晶体学数据和顺磁核磁共振数据(伪接触位移和自取向残余偶极耦合)和/或抗磁残余偶极耦合。在REFMAC5中纳入这些远程核磁共振约束,可以揭示分子固态和溶液构象之间的差异,或者在没有差异的情况下,可与X射线晶体学数据一起用于结构精修。由于核磁共振和X射线数据具有互补性,当单一结构与两组数据一致且仍保持合理的“理想”几何形状时,预计所得原子模型的可靠性会提高。该程序在五种不同的蛋白质上进行了测试:基质金属蛋白酶1的催化结构域、GB3、泛素、游离钙调蛋白以及与肽复合的钙调蛋白。在某些情况下,联合精修产生了与两组观测结果一致的单一模型,而在其他情况下,它表明在实验不确定性范围之外,溶液和固态中存在不同的蛋白质构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57d3/4306559/1e254774484c/d-70-00958-fig1.jpg

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