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识别球状蛋白质正确折叠的接触电位。

Contact potential that recognizes the correct folding of globular proteins.

作者信息

Maiorov V N, Crippen G M

机构信息

College of Pharmacy, University of Michigan, Ann Arbor 48109.

出版信息

J Mol Biol. 1992 Oct 5;227(3):876-88. doi: 10.1016/0022-2836(92)90228-c.

DOI:10.1016/0022-2836(92)90228-c
PMID:1404392
Abstract

We have devised a continuous function of interresidue contacts in globular proteins such that the X-ray crystal structure has a lower function value than that of thousands of protein-like alternative conformations. Although we fit the adjustable parameters of the potential using only 10,000 alternative structures for a selected training set of 37 proteins, a grand total of 530,000 constraints was satisfied, derived from 73 proteins and their numerous alternative conformations. In every case where the native conformation is adequately globular and compact, according to objective criteria we have developed, the potential function always favors the native over all alternatives by a substantial margin. This is true even for an additional three proteins never used in any way in the fitting procedure. Conformations differing only slightly from the native, such as those coming from crystal structures of the same protein complexed with different ligands or from crystal structures of point mutants, have function values very similar to the native's and always less than those of alternatives derived from substantially different crystal structures. This holds for all 95 structures that are homologous to one or another of various proteins we used. Realizing that this potential should be useful for modeling the conformation of new protein sequences from the body of protein crystal structures, we suggest a test for deciding whether a nearly correct approximation to the native conformation has been found.

摘要

我们设计了一种球状蛋白质中残基间接触的连续函数,使得X射线晶体结构的函数值低于数千种类似蛋白质的替代构象。尽管我们仅使用37种蛋白质的选定训练集的10000种替代结构来拟合势函数的可调参数,但总共满足了530000个约束条件,这些约束条件来自73种蛋白质及其众多替代构象。根据我们制定的客观标准,在每种天然构象足够球状且紧凑的情况下,势函数总是以很大优势偏向于天然构象而非所有替代构象。即使对于在拟合过程中从未以任何方式使用过的另外三种蛋白质也是如此。与天然构象仅略有不同的构象,例如来自与不同配体复合的同一蛋白质的晶体结构或点突变体的晶体结构,其函数值与天然构象非常相似,并且总是小于来自本质上不同晶体结构的替代构象。对于与我们使用的各种蛋白质中的一种或另一种同源的所有95种结构都是如此。认识到这种势对于从蛋白质晶体结构库中模拟新蛋白质序列的构象应该是有用的,我们提出了一种测试方法,以确定是否找到了对天然构象的近似正确的近似。

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