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谷胱甘肽S-转移酶π生育酚结合位点中酪氨酸79的鉴定。

Identification of tyrosine 79 in the tocopherol binding site of glutathione S-transferase pi.

作者信息

Ralat Luis A, Colman Roberta F

机构信息

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

出版信息

Biochemistry. 2006 Oct 17;45(41):12491-9. doi: 10.1021/bi061330k.

DOI:10.1021/bi061330k
PMID:17029404
Abstract

Alpha-tocopherol, the most abundant form of vitamin E present in humans, is a noncompetitive inhibitor of glutathione S-transferase pi (GST pi), but its binding site had not been located. Tocopherol iodoacetate (TIA), a reactive analogue, produces a time-dependent inactivation of GST pi to a limit of 25% residual activity. The rate constant for inactivation, k(obs), exhibits a nonlinear dependence on reagent concentration, with K(I) = 19 microM and k(max) = 0.158 min(-)(1). Complete protection against inactivation is provided by tocopherol and tocopherol acetate, whereas glutathione derivatives, electrophilic substrate analogues, buffers, or nonsubstrate hydrophobic ligands have little effect on k(obs). These results indicate that TIA reacts as an affinity label of a distinguishable tocopherol binding site. Loss of activity occurs concomitant with incorporation of about 1 mol of reagent/mol of enzyme subunit when the enzyme is maximally inactivated. Isolation of the labeled peptide from the tryptic digest shows that Tyr(79) is the only enzymic amino acid modified. The Y79F, Y79S, and Y79A mutant enzymes were generated, expressed, and purified. Changing Tyr(79) to Ser or Ala, but not Phe, renders the enzyme insensitive to inhibition by either tocopherol or tocopherol acetate as demonstrated by increases of at least 49-fold in K(I) values as compared to the wild-type enzyme. These results and examination of the crystal structure of GST pi suggest that tocopherols bind at a novel site, where an aromatic residue at position 79 is essential for binding.

摘要

α-生育酚是人体内维生素E最丰富的形式,是谷胱甘肽S-转移酶pi(GST pi)的非竞争性抑制剂,但其结合位点尚未确定。生育酚碘乙酸酯(TIA)是一种活性类似物,能使GST pi产生时间依赖性失活,残余活性极限为25%。失活速率常数k(obs)对试剂浓度呈非线性依赖,K(I) = 19 microM,k(max) = 0.158 min⁻¹。生育酚和生育酚乙酸酯可完全保护酶不被失活,而谷胱甘肽衍生物、亲电底物类似物、缓冲液或非底物疏水配体对k(obs)影响很小。这些结果表明TIA作为一个可区分的生育酚结合位点的亲和标记发生反应。当酶最大程度失活时,活性丧失与每摩尔酶亚基掺入约1摩尔试剂同时发生。从胰蛋白酶消化产物中分离出标记肽段表明,Tyr(79)是唯一被修饰的酶氨基酸。构建、表达并纯化了Y79F、Y79S和Y79A突变酶。将Tyr(79)替换为Ser或Ala而非Phe,会使酶对生育酚或生育酚乙酸酯的抑制不敏感,与野生型酶相比,K(I)值至少增加49倍。这些结果以及对GST pi晶体结构的研究表明,生育酚结合在一个新位点,其中79位的芳香族残基对结合至关重要。

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