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首页> 外文期刊>The biochemical journal >Contribution of five amino acid residues in the glutathione-binding site to the function of human glutathione transferase P1-1
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Contribution of five amino acid residues in the glutathione-binding site to the function of human glutathione transferase P1-1

机译:谷胱甘肽结合位点的五个氨基酸残基对人谷胱甘肽转移酶P1-1功能的贡献

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pFive amino acids in proximity to GSH bound in the active-site cavity of human Class Pi glutathione transferase (GST) P1-1 were mutated by oligonucleotide-directed site-specific mutagenesis. The following mutations gave catalytically active mutant proteins with the proper dimeric structure: Arg14----Ala, Lys45----Ala, Gln52----Ala, Gln65----His and Asp99----Asn. The mutation Gln65----Ala was also made, but the protein was not characterized because of its poor catalytic activity. Residues Arg14, Lys45, Gln52 and Gln65 all contribute to binding of glutathione, and the substitutions caused an approx. 10-fold decrease in affinity, corresponding to 5 kJ/mol, except for Arg14, for which the effect was larger. In addition, Arg14 appears to have an important structure role, since the Arg14----Ala mutant demonstrated a significantly lower stability as compared with the wild-type and the other mutant enzymes. Asp99 primarily contributes to catalysis rather than to binding. The kcat./Km-versus-pH profile for the Asp99----Asn mutant is shifted by 0.5 pH unit in the alkaline direction, and it is proposed that Asp99 may participate in proton transfer in the catalytic mechanism. The possibility of redesigning the substrate specificity for GSTs was shown by the fact that the mutant Lys45----Ala displayed a higher catalytic efficiency with GSH monoethyl ester than with its natural substrate, GSH./p
机译:在人类Pi谷胱甘肽转移酶(GST)P1-1的活性位点腔中,结合在GSH附近的5个氨基酸通过寡核苷酸定向的位点特异性诱变进行突变。下列突变产生具有适当二聚体结构的催化活性突变蛋白:Arg14 ---- Ala,Lys45 ---- Ala,Gln52 ---- Ala,Gln65 ---- His和Asp99-Asn。也产生了Gln65 ---- Ala突变,但由于其催化活性差而无法鉴定该蛋白。残基Arg14,Lys45,Gln52和Gln65均与谷胱甘肽的结合有关,而这些取代引起约5%的谷胱甘肽结合。亲和力降低10倍,相当于5 kJ / mol,但Arg14除外,其作用更大。此外,Arg14似乎具有重要的结构作用,因为与野生型和其他突变酶相比,Arg14 ---- Ala突变体显示出明显较低的稳定性。 Asp99主要有助于催化而不是结合。 Asp99-Asn突变体的kcat./Km-pH谱在碱性方向上移动了0.5个pH单位,提示Asp99可能参与了质子传递的催化机理。 Lys45 ---- Ala突变体对GST单乙酯的催化效率高于其天然底物GSH,表明重新设计GST底物特异性的可能性。

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