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大鼠谷胱甘肽S-转移酶A1-1 C末端的定位:W21F和W21F/F220Y突变体的晶体结构

Localization of the C-terminus of rat glutathione S-transferase A1-1: crystal structure of mutants W21F and W21F/F220Y.

作者信息

Adman E T, Le Trong I, Stenkamp R E, Nieslanik B S, Dietze E C, Tai G, Ibarra C, Atkins W M

机构信息

Department of Biological Structure, University of Washington, Seattle, Washington, USA.

出版信息

Proteins. 2001 Feb 1;42(2):192-200. doi: 10.1002/1097-0134(20010201)42:2<192::aid-prot60>3.0.co;2-#.

DOI:10.1002/1097-0134(20010201)42:2<192::aid-prot60>3.0.co;2-#
PMID:11119643
Abstract

Twelve C-terminal residues of human glutathione S-transferase A1-1 form a helix in the presence of glutathione-conjugate, or substrate alone, and partly cover the active site. According to X-ray structures, the helix is disordered in the absence of glutathione, but it is not known if it is helical and delocalized, or in a random-coil conformation. Mutation to a tyrosine of residue 220 within this helix was previously shown to affect the pK(a) of Tyr-9 at the active site, in the apo form of the enzyme, and it was proposed that an on-face hydrogen bond between Tyr-220 and Tyr-9 provided a means for affecting this pK(a). In the current study, X-ray structures of the W21F and of the C-terminal mutation, W21F/F220Y, with glutathione sulfonate bound, show that the C-terminal helix is disordered (or delocalized) in the W21F crystal but is visible and ordered in a novel location, a crystal packing crevice, in one of three monomers in the W21F/F220Y crystal, and the proposed hydrogen bond is not formed. Fluorescence spectroscopy studies using an engineered F222W mutant show that the C-terminus remains delocalized in the absence of glutathione or when only the glutathione binding site is occupied, but is ordered and localized in the presence of substrate or conjugate, consistent with these and previous crystallographic studies. Proteins 2001;42:192-200.

摘要

人谷胱甘肽S-转移酶A1-1的12个C末端残基在存在谷胱甘肽结合物或仅存在底物时形成螺旋结构,并部分覆盖活性位点。根据X射线结构,在没有谷胱甘肽的情况下该螺旋是无序的,但尚不清楚它是呈螺旋状且位置不定,还是处于无规卷曲构象。先前研究表明,该螺旋内第220位残基突变为酪氨酸会影响酶的脱辅基形式下活性位点处酪氨酸-9的pK(a),并推测酪氨酸-220和酪氨酸-9之间的面对面氢键是影响该pK(a)的一种方式。在当前研究中,结合了谷胱甘肽磺酸盐的W21F和C末端突变体W21F/F220Y的X射线结构表明,W21F晶体中的C末端螺旋是无序的(或位置不定),但在W21F/F220Y晶体中三个单体之一的一个新位置(晶体堆积缝隙)中是可见且有序的,并且未形成推测的氢键。使用工程化的F222W突变体进行的荧光光谱研究表明,在没有谷胱甘肽时或仅谷胱甘肽结合位点被占据时,C末端仍位置不定,但在存在底物或结合物时是有序且定位的,这与这些以及先前的晶体学研究一致。《蛋白质》2001年;42卷:192 - 200页。

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