[人类肌苷三磷酸焦磷酸酶hITPA突变体P32T同源和异源二聚体的模拟]。

Biofizika Pub Date : 2015-07-01
E B Dushanov, Kh T Kholmurodov, N A Koltovaya
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引用次数: 0

摘要

三种形式的二聚体酶,人肌苷三磷酸焦磷酸酶的结构被认为可以识别导致P32T突变失活效应的酶构象变化。纳秒分子动力学的分析被执行;计算了野生型和突变型同型二聚体以及异源二聚体之间原子的均方差。3ns模型显示突变原聚物的原子位移更大。在分子动力学模拟中,α2和β2之间的环(氨基酸残基28-33,P32T突变区域)、β5和β6之间的环以及c端氨基酸残基变化最大。(α2和β2之间的环具有两种构象,其特征是Phe31芳香基团的不同位置。Cys33 (Cα)与Phe31 (C(z))的距离分别为-9和5.5 Å。这些构象保持不变。
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[Simulation of Mutant P32T Homo- and Heterodimers of Human Inosine Triphosphate Pyrophosphatase hITPA].

The structure of three forms of a dimeric enzyme, human inosine triphosphate pyrophosphatase, is considered to identify the enzyme conformation changes causing the inactivation effect of a P32T mutation. Analysis of a nanosecond molecular dynamics is performed; the mean square deviations of the atoms between the wild-type and mutant homodimers, and also the heterodimer are calculated. A 3 ns modeling shows a greater displacement of atoms in mutant protomers. During molecular dynamics simulation, the strongest changes are observed in the loop between α2 and β2 (amino acid residues 28-33, an area of the P32T mutation), the loop between β5 and β6, and the C-terminal amino acid residues. The loop between (α2 and β2 has two conformations characterized by different positions of the Phe31 aromatic group. The distance between Cys33 (Cα) and Phe31 (C(z)) for wild-type and mutant protomers was -9 and 5.5 Å, respectively. These conformations were kept constant.

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