首页> 外文期刊>Journal of Molecular Biology >FUNCTIONAL SIGNIFICANCE OF ARGININE 15 IN THE ACTIVE SITE OF HUMAN CLASS ALPHA GLUTATHIONE TRANSFERASE A1-1
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FUNCTIONAL SIGNIFICANCE OF ARGININE 15 IN THE ACTIVE SITE OF HUMAN CLASS ALPHA GLUTATHIONE TRANSFERASE A1-1

机译:精氨酸15在人类阿尔法谷胱甘肽转移酶A1-1活性位点中的功能意义

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摘要

Arg15 is a conserved active-site residue in class Alpha glutathione transferases. X-ray diffraction studies of human glutathione transferase Al-1 have shown that N-epsilon of this amino acid residue is adjacent to the sulfur atom of a glutathione derivative bound to the active site, suggesting the presence of a hydrogen bond. The phenolic hydroxyl group of Tyr9 also forms a hydrogen bond to the sulfur atom of glutathione, and removal of this hydroxyl group causes partial inactivation of the enzyme. The present study demonstrates by use of site-directed mutagenesis the functional significance of Arg15 for catalysis. Mutation of Arg15 into Leu reduced the catalytic activity by 25-fold, whereas substitution by Lys caused only a threefold decrease, indicating the significance of a positively charged residue at position 15. Mutation of Arg15 into Ala or His caused a substantial reduction of the specific activity (200 or 400-fold, respectively), one order of magnitude more pronounced than the effect of the Tyr9-->Phe mutation. Double mutations involving residues 9 and 15 demonstrated that the effects of mutations at the two positions were additive except for the substitution of His for Arg15, which appeared to cause secondary structural effects. The pK(a) value of the phenolic hydroxyl of Tyr9 was determined by UV absorption difference spectroscopy and was found to be 8.1 in the wild-type enzyme. The corresponding pK(a) values of mutants R15K, R15H and R15L were 8.5, 8.7 and 8.8, respectively, demonstrating the contribution of the guanidinium group of Arg15 to the electrostatic field in the active site. Addition of glutathione caused an increased pK(a) value of Tyr9; this effect was not obtained with S-methylglutathione. These results show that Tyr9 is protonated when glutathione is bound to the enzyme at physiological pH values. The involvement of an Arg residue in the binding and activation of glutathione is a feature that distinguishes class Alpha glutathione transferases from members in other glutathione transferase classes. [References: 39]
机译:Arg15是Alpha谷胱甘肽转移酶类中的保守活性位点残基。人谷胱甘肽转移酶Al-1的X射线衍射研究表明,该氨基酸残基的N-ε与结合到活性位点上的谷胱甘肽衍生物的硫原子相邻,表明存在氢键。 Tyr9的酚羟基还与谷胱甘肽的硫原子形成氢键,该羟基的除去导致酶的部分失活。本研究通过使用定点诱变证明了Arg15催化的功能意义。 Arg15突变为Leu会使催化活性降低25倍,而Lys取代仅引起3倍的降低,表明在位置15处带正电荷的残基的重要性。Arg15突变为Ala或His导致特异性降低。活性(分别为200或400倍),比Tyr9-> Phe突变的影响显着一个数量级。涉及残基9和15的双突变表明,两个位置的突变效应是加和的,除了用His替代Arg15外,这似乎引起了二级结构效应。通过紫外吸收差光谱法测定了Tyr9的酚羟基的pK(a)值,在野生型酶中发现为8.1。突变体R15K,R15H和R15L的相应pK(a)值分别为8.5、8.7和8.8,表明Arg15的胍基对活性位点中的静电场的贡献。谷胱甘肽的添加导致Tyr9的pK(a)值增加;用S-甲基谷胱甘肽不能获得这种效果。这些结果表明,当谷胱甘肽在生理pH值下与酶结合时,Tyr9被质子化。 Arg残基参与谷胱甘肽的结合和活化是一种特征,其将α类谷胱甘肽转移酶与其他谷胱甘肽转移酶类别的成员区分开。 [参考:39]

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