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通过蒙特卡罗模拟退火预测的牛胰蛋白酶抑制剂片段(16 - 36)的β-折叠结构。

Beta-sheet folding of fragment (16-36) of bovine pancreatic trypsin inhibitor as predicted by Monte Carlo simulated annealing.

作者信息

Nakazawa T, Kawai H, Okamoto Y, Fukugita M

机构信息

Department of Chemistry, Nara Women's University, Japan.

出版信息

Protein Eng. 1992 Sep;5(6):495-503. doi: 10.1093/protein/5.6.495.

Abstract

A tertiary structure prediction is described using Monte Carlo simulated annealing for the peptide fragment corresponding to residues 16-36 of bovine pancreatic trypsin inhibitor (BPTI). The simulation starts with randomly chosen initial conformations and is performed without imposing experimental constraints using energy functions given for generic interatomic interactions. Out of 20 simulation trials, seven conformations show a sheet-like structure--two strands connected by a turn--although this sheet-like structure is not as rigid as that observed in native BPTI. It is also shown that these conformations are mostly looped and exhibit a native-like right-handed twist. Unlike the case with the C-peptide of RNase A, no conspicuous alpha-helical structure is found in any of the final conformations obtained in the simulation. However, the lowest-energy conformation does not resemble exactly the native structure. This indicates that the rigid beta-sheet conformation of native BPTI merely corresponds to a local minimum of the energy function if the fragment with residues 16-36 is isolated from the native protein. A statistical analysis of all 20 final conformations suggests that the tendency for the peptide segments to form extended beta-strands is strong for those with residues 18-24, and moderate for those with residues 30-35. The segment of residues 25-29 does not tend to form any definite structure. In native BPTI, the former segments are involved in the beta-sheet and the latter in the turn. A folding scenario is also speculated from this analysis.

摘要

描述了一种使用蒙特卡罗模拟退火法对牛胰蛋白酶抑制剂(BPTI)中对应于16 - 36位残基的肽片段进行三级结构预测的方法。模拟从随机选择的初始构象开始,在不施加实验约束的情况下,使用给定的通用原子间相互作用能量函数进行。在20次模拟试验中,有7种构象呈现出片状结构——由一个转角连接的两条链——尽管这种片状结构不像天然BPTI中观察到的那样刚性。还表明这些构象大多是环状的,并呈现出类似天然的右手扭曲。与核糖核酸酶A的C肽情况不同,在模拟得到的任何最终构象中都未发现明显的α - 螺旋结构。然而,能量最低的构象并不完全类似于天然结构。这表明如果将16 - 36位残基的片段从天然蛋白质中分离出来,天然BPTI的刚性β - 折叠构象仅仅对应于能量函数的一个局部最小值。对所有20种最终构象的统计分析表明,对于18 - 24位残基的肽段,形成延伸β - 链的趋势很强,对于30 - 35位残基的肽段,这种趋势适中。25 - 29位残基的片段不倾向于形成任何确定的结构。在天然BPTI中,前一个片段参与β - 折叠,后一个片段参与转角。还从该分析中推测了一种折叠模式。

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