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PDB2CD可呈现蛋白质结构中的动力学变化。

PDB2CD visualises dynamics within protein structures.

作者信息

Janes Robert W

机构信息

School of Biological and Chemical Sciences, Queen Mary University of London, Mile End Road, London, E1 4NS, UK.

出版信息

Eur Biophys J. 2017 Oct;46(7):607-616. doi: 10.1007/s00249-017-1203-0. Epub 2017 Apr 3.

DOI:10.1007/s00249-017-1203-0
PMID:28374045
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5599472/
Abstract

Proteins tend to have defined conformations, a key factor in enabling their function. Atomic resolution structures of proteins are predominantly obtained by either solution nuclear magnetic resonance (NMR) or crystal structure methods. However, when considering a protein whose structure has been determined by both these approaches, on many occasions, the resultant conformations are subtly different, as illustrated by the examples in this study. The solution NMR approach invariably results in a cluster of structures whose conformations satisfy the distance boundaries imposed by the data collected; it might be argued that this is evidence of the dynamics of proteins when in solution. In crystal structures, the proteins are often in an energy minimum state which can result in an increase in the extent of regular secondary structure present relative to the solution state depicted by NMR, because the more dynamic ends of alpha helices and beta strands can become ordered at the lower temperatures. This study examines a novel way to display the differences in conformations within an NMR ensemble and between these and a crystal structure of a protein. Circular dichroism (CD) spectroscopy can be used to characterise protein structures in solution. Using the new bioinformatics tool, PDB2CD, which generates CD spectra from atomic resolution protein structures, the differences between, and possible dynamic range of, conformations adopted by a protein can be visualised.

摘要

蛋白质往往具有确定的构象,这是其发挥功能的关键因素。蛋白质的原子分辨率结构主要通过溶液核磁共振(NMR)或晶体结构方法获得。然而,当考虑一个其结构已通过这两种方法确定的蛋白质时,在许多情况下,所得构象会略有不同,本研究中的例子就说明了这一点。溶液核磁共振方法总是会产生一组结构,其构象满足所收集数据施加的距离边界;可以认为这是蛋白质在溶液中动态性的证据。在晶体结构中,蛋白质通常处于能量最低状态,这可能导致相对于核磁共振所描绘的溶液状态,规则二级结构的存在程度增加,因为α螺旋和β链较动态的末端在较低温度下会变得有序。本研究探讨了一种展示核磁共振系综内构象差异以及这些构象与蛋白质晶体结构之间差异的新方法。圆二色性(CD)光谱可用于表征溶液中的蛋白质结构。使用新的生物信息学工具PDB2CD,它能从原子分辨率的蛋白质结构生成CD光谱,可以直观地看到蛋白质所采用构象之间的差异以及可能的动态范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/9fb29ef5e0f9/249_2017_1203_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/45c796fffcef/249_2017_1203_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/f2173c665c63/249_2017_1203_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/7650ae21f471/249_2017_1203_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/9fb29ef5e0f9/249_2017_1203_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/45c796fffcef/249_2017_1203_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/f2173c665c63/249_2017_1203_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/7650ae21f471/249_2017_1203_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9199/5599472/9fb29ef5e0f9/249_2017_1203_Fig4_HTML.jpg

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Bioinformatics. 2017 Jan 1;33(1):56-63. doi: 10.1093/bioinformatics/btw554. Epub 2016 Sep 20.
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PCDDB: new developments at the Protein Circular Dichroism Data Bank.蛋白质圆二色性数据库(PCDDB):新进展
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Accurate secondary structure prediction and fold recognition for circular dichroism spectroscopy.
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Extending the eNOE data set of large proteins by evaluation of NOEs with unresolved diagonals.通过评估具有未解析对角线的核Overhauser效应(NOE)来扩展大蛋白的电子核Overhauser效应(eNOE)数据集。
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