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与石杉碱甲复合的小鼠乙酰胆碱酯酶的分子动力学

Molecular dynamics of mouse acetylcholinesterase complexed with huperzine A.

作者信息

Tara S, Helms V, Straatsma T P, McCammon J A

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, CA 92093-0365, USA.

出版信息

Biopolymers. 1999 Oct 5;50(4):347-59. doi: 10.1002/(SICI)1097-0282(19991005)50:4<347::AID-BIP1>3.0.CO;2-R.

Abstract

Two molecular dynamics simulations were performed for a modeled complex of mouse acetylcholinesterase liganded with huperzine A (HupA). Analysis of these simulations shows that HupA shifts in the active site toward Tyr 337 and Phe 338, and that several residues in the active site area reach out to make hydrogen bonds with the inhibitor. Rapid fluctuations of the gorge width are observed, ranging from widths that allow substrate access to the active site, to pinched structures that do not allow access of molecules as small as water. Additional openings or channels to the active site are found. One opening is formed in the side wall of the active site gorge by residues Val 73, Asp 74, Thr 83, Glu 84, and Asn 87. Another opening is formed at the base of the gorge by residues Trp 86, Val 132, Glu 202, Gly 448, and Ile 451. Both of these openings have been observed separately in the Torpedo californica form of the enzyme. These channels could allow transport of waters and ions to and from the bulk solution.

摘要

对与石杉碱甲(HupA)结合的小鼠乙酰胆碱酯酶模拟复合物进行了两次分子动力学模拟。这些模拟分析表明,HupA在活性位点向酪氨酸337和苯丙氨酸338移动,并且活性位点区域的几个残基伸出与抑制剂形成氢键。观察到峡部宽度的快速波动,范围从允许底物进入活性位点的宽度到不允许像水这样小的分子进入的收缩结构。发现了通向活性位点的其他开口或通道。一个开口由缬氨酸73、天冬氨酸74、苏氨酸83、谷氨酸84和天冬酰胺87在活性位点峡部的侧壁形成。另一个开口由色氨酸86、缬氨酸132、谷氨酸202、甘氨酸448和异亮氨酸451在峡部底部形成。这两个开口在电鳐形式的酶中已分别观察到。这些通道可以允许水和离子在本体溶液与活性位点之间运输。

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