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用谷胱甘肽基S-[4-(琥珀酰亚胺基)-二苯甲酮]对大鼠肝脏谷胱甘肽S-转移酶4-4进行光亲和标记。

Photoaffinity labeling of rat liver glutathione S-transferase, 4-4, by glutathionyl S-[4-(succinimidyl)-benzophenone].

作者信息

Wang J, Bauman S, Colman R F

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark 19716, USA.

出版信息

Biochemistry. 1998 Nov 10;37(45):15671-9. doi: 10.1021/bi981381k.

Abstract

Glutathionyl S-[4-(succinimidyl)benzophenone] (GS-Succ-BP), an analogue of the product of glutathione and xenobiotic substrate, was synthesized and shown to act as a photoaffinity label of rat liver glutathione S-transferase, 4-4. A time-dependent photoinactivation occurs upon irradiation at long wavelength UV light of the complex of enzyme and GS-Succ-BP. The rate of inactivation exhibits nonlinear dependence on [GS-Succ-BP], characterized by an apparent KI of 115 microM and kmax of 0.469 min-1. Effective protection against photoinactivation by 150 microM GS-Succ-BP is provided by dinitrophenol, nitrobenzene, ethacrynic acid, and S-hexylglutathione, analogues of xenobiotic substrates and product. These results suggest that GS-Succ-BP reacts with the enzyme within the active site, probably in the xenobiotic substrate-binding site. Upon complete inactivation, reagent incorporation of about 1 mol/mol of enzyme dimer is measured by radioactivity and MALDI-TOF mass spectrometry. Isolation of modified peptides followed by gas-phase sequencing and mass spectrometry indicates that Met-112 is the only reaction target of GS-Succ-BP. Although only one subunit of the enzyme dimer is modified, catalytic activity of both subunits is lost. Molecular modeling suggests that the benzophenone moiety of the compound binds in the cleft between the two enzyme subunits and modification of Met-112 on one subunit excludes reaction of the corresponding methionine on the other subunit. It is proposed that the new compound, glutathionyl S-[4-(succinimidyl)benzophenone], may have general applicability as a photoaffinity label of other enzymes with glutathione binding sites.

摘要

谷胱甘肽基 S-4-(琥珀酰亚胺基)二苯甲酮,一种谷胱甘肽与外源性底物产物的类似物,已被合成,并被证明可作为大鼠肝脏谷胱甘肽 S-转移酶 4-4 的光亲和标记物。在长波长紫外光照射下,酶与 GS-Succ-BP 的复合物会发生时间依赖性的光失活。失活速率对[GS-Succ-BP]呈现非线性依赖性,其表观解离常数 KI 为 115 μM,最大失活速率 kmax 为 0.469 min⁻¹。二硝基苯酚、硝基苯、依他尼酸和 S-己基谷胱甘肽(外源性底物和产物的类似物)可有效保护酶免受 150 μM GS-Succ-BP 的光失活作用。这些结果表明,GS-Succ-BP 在活性位点内与酶发生反应,可能是在外源性底物结合位点。完全失活后,通过放射性和基质辅助激光解吸电离飞行时间质谱法测定,约每摩尔酶二聚体掺入 1 摩尔试剂。分离修饰后的肽段,随后进行气相测序和质谱分析表明,Met-112 是 GS-Succ-BP 的唯一反应靶点。虽然酶二聚体中只有一个亚基被修饰,但两个亚基的催化活性均丧失。分子模拟表明,该化合物的二苯甲酮部分结合在两个酶亚基之间的裂隙中,一个亚基上 Met-112 的修饰排除了另一个亚基上相应甲硫氨酸的反应。有人提出,新化合物谷胱甘肽基 S-[4-(琥珀酰亚胺基)二苯甲酮]可能具有普遍适用性,可作为其他具有谷胱甘肽结合位点的酶的光亲和标记物。

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