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乙酰胆碱酯酶的底物抑制作用:影响从表面到催化中心信号转导的残基

Substrate inhibition of acetylcholinesterase: residues affecting signal transduction from the surface to the catalytic center.

作者信息

Shafferman A, Velan B, Ordentlich A, Kronman C, Grosfeld H, Leitner M, Flashner Y, Cohen S, Barak D, Ariel N

机构信息

Department of Biochemistry, Israel Institute for Biological Research, Ness-Ziona.

出版信息

EMBO J. 1992 Oct;11(10):3561-8. doi: 10.1002/j.1460-2075.1992.tb05439.x.

Abstract

Amino acids located within and around the 'active site gorge' of human acetylcholinesterase (AChE) were substituted. Replacement of W86 yielded inactive enzyme molecules, consistent with its proposed involvement in binding of the choline moiety in the active center. A decrease in affinity to propidium and a concomitant loss of substrate inhibition was observed in D74G, D74N, D74K and W286A mutants, supporting the idea that the site for substrate inhibition and the peripheral anionic site overlap. Mutations of amino acids neighboring the active center (E202, Y337 and F338) resulted in a decrease in the catalytic and the apparent bimolecular rate constants. A decrease in affinity to edrophonium was observed in D74, E202, Y337 and to a lesser extent in F338 and Y341 mutants. E202, Y337 and Y341 mutants were not inhibited efficiently by high substrate concentrations. We propose that binding of acetylcholine, on the surface of AChE, may trigger sequence of conformational changes extending from the peripheral anionic site through W286 to D74, at the entrance of the 'gorge', and down to the catalytic center (through Y341 to F338 and Y337). These changes, especially in Y337, could block the entrance/exit of the catalytic center and reduce the catalytic efficiency of AChE.

摘要

对人乙酰胆碱酯酶(AChE)“活性位点峡谷”内部及周围的氨基酸进行了替换。W86的替换产生了无活性的酶分子,这与其参与活性中心胆碱部分结合的推测一致。在D74G、D74N、D74K和W286A突变体中观察到对碘化丙啶的亲和力降低以及底物抑制作用的同时丧失,支持了底物抑制位点与外周阴离子位点重叠的观点。活性中心附近氨基酸(E202、Y337和F338)的突变导致催化和表观双分子速率常数降低。在D74、E202、Y337突变体中观察到对依酚氯铵的亲和力降低,在F338和Y341突变体中降低程度较小。E202、Y337和Y341突变体不能被高底物浓度有效抑制。我们提出,乙酰胆碱在AChE表面的结合可能引发一系列构象变化,从外周阴离子位点通过W286延伸到“峡谷”入口处的D74,并向下延伸至催化中心(通过Y341到F338和Y337)。这些变化,尤其是Y337中的变化,可能会阻断催化中心的入口/出口并降低AChE的催化效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65d7/556814/6a9b3026567a/emboj00095-0088-a.jpg

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