首页> 美国卫生研究院文献>Biochemical Journal >Modification of glutathione S-transferase 3-3 mutants with 2-(S-glutathionyl)-356-trichloro-14-benzoquinone. Identification of the C-terminal tryptic fragment as part of the H-site and evidence that 2-(S-glutathionyl)-356-trichloro-14-benzoquinone is not specific for cysteine labelling.
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Modification of glutathione S-transferase 3-3 mutants with 2-(S-glutathionyl)-356-trichloro-14-benzoquinone. Identification of the C-terminal tryptic fragment as part of the H-site and evidence that 2-(S-glutathionyl)-356-trichloro-14-benzoquinone is not specific for cysteine labelling.

机译:用2-(S-谷胱甘肽)-356-三氯-14-苯醌修饰谷胱甘肽S-转移酶3-3突变体。鉴定C末端胰蛋白酶片段为H部位的一部分并证明2-(S-谷胱甘肽)-356-三氯-14-苯醌对半胱氨酸标记不是特异性的。

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摘要

A triple mutant of rat liver glutathione S-transferase 3-3 that has all three cysteine residues replaced with serine (CallS) and a quadruple mutant with a Tyr-115 to phenylalanine substitution on CallS (CallSY115F) were reacted with 2-(S-glutathionyl)-3,5,6-trichloro-1,4-benzoquinone (GS-1,4-TCBQ). The modified proteins were analysed on a triple-quadrupole mass spectrometer equipped with an electrospray ionization source. At an enzyme: GS-1,4-TCBQ ratio of 1:10, the enzymes were modified at multiple sites. Covalent attachment of a single inhibitor on to the protein was achieved by lowering the enzyme: GS-1,4-TCBQ ratio to 1:1. Results from m.s. analyses suggest that the inhibitor on the CallSY115F mutant exists as a glutathionyl dichlorobenzoquinone derivative. The modifiers of the CallS mutants are glutathionyl monochlorobenzoquinone derivatives. Therefore, GS-1,4-TCBQ reacts at a single site on CallSY115F, but probably cross-links two regions on wild-type and CallS mutant. To confirm our observation, CallS was modified with 1-chloro2,4-dinitrobenzene, which specifically labels Tyr-115, before reacting with GS-1,4-TCBQ. The inhibitor formed a glutathionyl dichlorobenzoquinone adduct on the dinitrophenyl-CallS mutant. In addition, the benzoquinone derivative on the protein can be partially removed by 1-chloro-2,4-dinitrobenzene. Peptide mapping and sequencing analysis of the GS-1,4-TCBQ-modified CallS mutant revealed that the C-terminal 16-amino-acid fragment is labelled. Molecular modelling suggests the C(5) and C(6) on the benzoquinone ring of the inhibitor interact with the oxygen atoms of Tyr-115 and Ser-209 respectively.
机译:大鼠肝脏谷胱甘肽S-转移酶3-3的三重突变体(其三个半胱氨酸残基全部被丝氨酸(CallS)取代)和在Tyr-115取代苯丙氨酸的四重突变体(CallSY115F)与2-(S-谷胱甘肽)-3,5,6-三氯-1,4-苯醌(GS-1,4-TCBQ)。在配备电喷雾电离源的三重四极杆质谱仪上分析了修饰的蛋白质。在酶:GS-1,4-TCBQ比为1:10的情况下,酶在多个位点进行了修饰。通过将酶:GS-1,4-TCBQ的比例降低至1:1,可以将单一抑制剂共价附于蛋白质。来自m.s.的结果分析表明,CallSY115F突变体的抑制剂以谷胱甘肽二氯苯醌衍生物的形式存在。 CallS突变体的修饰剂是谷胱甘肽单氯苯醌衍生物。因此,GS-1,4-TCBQ在CallSY115F上的单个位点发生反应,但可能使野生型和CallS突变体上的两个区域发生交联。为了证实我们的观察,在与GS-1,4-TCBQ反应之前,用1-chloro2,4-dinitrobenzene修饰了CallS,后者专门标记了Tyr-115。该抑制剂在二硝基苯基-CallS突变体上形成谷胱甘肽二氯苯醌醌加合物。另外,蛋白上的苯醌衍生物可以被1-氯-2,4-二硝基苯部分除去。 GS-1,4-TCBQ修饰的CallS突变体的肽图分析和测序分析表明,C末端的16个氨基酸片段已被标记。分子建模表明抑制剂的苯醌环上的C(5)和C(6)分别与Tyr-115和Ser-209的氧原子相互作用。

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