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蛋白质早期折叠单元的识别与从头算模拟

Identification and ab initio simulations of early folding units in proteins.

作者信息

Gilis D, Rooman M

机构信息

Ingénierie Biomoléculaire, Université Libre de Bruxelles, Bruxelles, Belgium.

出版信息

Proteins. 2001 Feb 1;42(2):164-76. doi: 10.1002/1097-0134(20010201)42:2<164::aid-prot30>3.0.co;2-#.

DOI:10.1002/1097-0134(20010201)42:2<164::aid-prot30>3.0.co;2-#
PMID:11119640
Abstract

The location of protein subunits that form early during folding, constituted of consecutive secondary structure elements with some intrinsic stability and favorable tertiary interactions, is predicted using a combination of threading algorithms and local structure prediction methods. Two folding units are selected among the candidates identified in a database of known protein structures: the fragment 15-55 of 434 cro, an all-alpha protein, and the fragment 1-35 of ubiquitin, an alpha/beta protein. These units are further analyzed by means of Monte Carlo simulated annealing using several database-derived potentials describing different types of interactions. Our results suggest that the local interactions along the chain dominate in the first folding steps of both fragments, and that the formation of some of the secondary structures necessarily occurs before structure compaction. These findings led us to define a prediction protocol, which is efficient to improve the accuracy of the predicted structures. It involves a first simulation with a local interaction potential only, whose final conformation is used as a starting structure of a second simulation that uses a combination of local interaction and distance potentials. The root mean square deviations between the coordinates of predicted and native structures are as low as 2-4 A in most trials. The possibility of extending this protocol to the prediction of full proteins is discussed. Proteins 2001;42:164-176.

摘要

利用穿线算法和局部结构预测方法相结合,预测了在折叠早期形成的蛋白质亚基的位置,这些亚基由具有一定内在稳定性和有利三级相互作用的连续二级结构元件组成。在已知蛋白质结构数据库中鉴定出的候选物中选择了两个折叠单元:全α蛋白434 cro的15 - 55片段和α/β蛋白泛素的1 - 35片段。使用描述不同类型相互作用的几种源自数据库的势,通过蒙特卡罗模拟退火对这些单元进行进一步分析。我们的结果表明,在两个片段的首次折叠步骤中,沿链的局部相互作用起主导作用,并且一些二级结构的形成必然在结构压实之前发生。这些发现使我们定义了一种预测方案,该方案对于提高预测结构的准确性是有效的。它首先仅使用局部相互作用势进行模拟,其最终构象用作第二次模拟的起始结构,第二次模拟使用局部相互作用和距离势的组合。在大多数试验中,预测结构与天然结构坐标之间的均方根偏差低至2 - 4埃。讨论了将该方案扩展到完整蛋白质预测的可能性。《蛋白质》2001年;42:164 - 176。

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