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Contribution of Arginine 13 to the Catalytic Activity of Human Class Pi Glutathione Transferase P1-1

机译:精氨酸13对人类类Pi谷胱甘肽转移酶P1-1催化活性的贡献。

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Arg13 is a conserved active-site residue in all known Pi class glutathione S-transferases (GSTs) and in most Alpha class GSTs. To evaluate its contribution to substrate binding and catalysis of this residue, three mutants (R13A, R13K, and R13L) were expressed in Escherichia coli and purified by GSH affinity chromatography. The substitutions of Arg13 significantly affected GSH-conjugation activity, while scarcely affecting glutathione peroxidase or steroid isomerase activities. Mutation of Arg13 into Ala largely reduced the GSH-conjugation activity by approximately 85 - 95%, whereas substitutions by Lys and Leu barely affected activity. These results suggest that, in the GSH-conjugation activity of hGST P1-1, the contribution of Arg13 toward catalytic activity is highly dependent on substrate specificities and the size of the side chain at position 13. From the kinetic parameters, introduction of larger side chains at position 13 results in stronger affinity (Leu Lys, Arg Ala) towards GSH. The substitutions of Arg13 with alanine and leucine significantly affected kcat, whereas substitution with Lys was similar to that of the wild type, indicating the significance of a positively charged residue at position 13. From the plots of log (kcat/KmCDNB) against pH, the pKa values of the thiol group of GSH bound in R13A, R13K, and R13L were estimated to be 1.8, 1.4, and 1.8 pK units higher than the pKa value of the wildtype enzyme, demonstrating the contribution of the Arg13 guanidinium group to the electrostatic field in the active site. From these results, we suggest that contribution of Arg13 in substrate binding is highly dependent on the nature of the electrophilic substrates, while in the catalytic mechanism, it stabilizes the GSH thiolate through hydrogen bonding.
机译:Arg13是所有已知的Pi类谷胱甘肽S-转移酶(GST)和大多数Alpha类GST中的保守活性位点残基。为了评估其对底物结合和该残基催化的贡献,在大肠杆菌中表达了三个突变体(R13A,R13K和R13L),并通过GSH亲和层析纯化。 Arg13的取代显着影响GSH偶联活性,而几乎不影响谷胱甘肽过氧化物酶或类固醇异构酶的活性。 Arg13突变为Ala大大降低了GSH缀合活性约85-95%,而被Lys和Leu取代几乎没有影响活性。这些结果表明,在hGST P1-1的GSH结合活性中,Arg13对催化活性的贡献高度依赖于底物特异性和第13位侧链的大小。从动力学参数出发,引入较大的侧基位置13的链对GSH的亲和力更高(Leu> Lys,Arg> Ala)。用丙氨酸和亮氨酸取代Arg13会显着影响kcat,而用Lys取代则类似于野生型,表明第13位带正电荷残基的重要性。从log(kcat / KmCDNB)相对于pH的曲线图中,估计与R13A,R13K和R13L结合的GSH巯基的pKa值比野生型酶的pKa值高1.8、1.4和1.8 pK个单位,表明Arg13胍基对静电的贡献活动站点中的字段。根据这些结果,我们认为Arg13在底物结合中的贡献高度依赖于亲电底物的性质,而在催化机理中,它通过氢键稳定了GSH硫醇盐。

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