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糖酵解酶相互作用的分子动力学模拟

Molecular dynamics simulation of interactions in glycolytic enzymes.

作者信息

Hakobyan D, Nazaryan K

机构信息

Institute of Molecular Biology, National Academy of Sciences of Armenia, 375014 Yerevan, Armenia.

出版信息

Biochemistry (Mosc). 2006 Apr;71(4):370-5. doi: 10.1134/s0006297906040043.

Abstract

Two glycolytic enzymes, phosphoglycerate mutase (PGM) and enolase from Saccharomyces cerevisiae, have been chosen to detect complex formation and possible channeling, using molecular dynamics simulation. The enzymes were separated by 10 angstroms distance and placed in a water-filled box of size 173 x 173 x 173 angstroms. Three different orientations have been investigated. The two initial 3-phosphoglycerate substrate molecules near the active centers of the initial structure of PGM have been replaced with final product (2-phosphoglycerate) molecules, and 150 mM NaCl together with three Mg2+ ions have been added to the system to observe post-catalytic activity under near-physiological conditions. Analysis of interaction energies and conformation changes for 3 nsec simulation indicates that PGM and enolase do show binding affinity between their near active regions, which is necessary for channeling to occur. Interaction of the C-terminal residues Ala239 and Val240 of PGM (which partially "cap" the 2-phosphoglycerate) with enolase also favors the existence of channeling.

摘要

已选用酿酒酵母的两种糖酵解酶,磷酸甘油酸变位酶(PGM)和烯醇化酶,通过分子动力学模拟来检测复合物形成及可能的通道化作用。这两种酶相距10埃放置在一个尺寸为173×173×173埃的充满水的盒子中。研究了三种不同的取向。PGM初始结构活性中心附近的两个初始3-磷酸甘油酸底物分子已被最终产物(2-磷酸甘油酸)分子取代,并且向系统中添加了150 mM NaCl和三个Mg2+离子,以观察近生理条件下的催化后活性。对3纳秒模拟的相互作用能和构象变化分析表明,PGM和烯醇化酶在其近活性区域之间确实表现出结合亲和力,这是发生通道化作用所必需的。PGM的C末端残基Ala239和Val240(它们部分“覆盖”2-磷酸甘油酸)与烯醇化酶的相互作用也有利于通道化作用的存在。

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