首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Mutagenic analysis of conserved arginine residues in and around the novel sulfate binding pocket of the human Theta class glutathione transferase T2-2.
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Mutagenic analysis of conserved arginine residues in and around the novel sulfate binding pocket of the human Theta class glutathione transferase T2-2.

机译:人类Theta类谷胱甘肽转移酶T2-2的新型硫酸盐结合口袋中及其周围保守的精氨酸残基的诱变分析。

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摘要

The human Theta class glutathione transferase GSTT2-2 has a novel sulfatase activity that is not dependent on the presence of a conserved hydrogen bond donor in the active site. Initial homology modeling and the crystallographic studies have identified three conserved Arg residues that contribute to the formation of (Arg107 and Arg239), and entry to (Arg242), a sulfate binding pocket. These residues have been individually mutated to Ala to investigate their potential role in substrate binding and catalysis. The mutation of Arg107 had a significant detrimental effect on the sulfatase reaction, while the Arg242 mutation caused only a small reduction in sulfatase activity. Surprisingly, the Arg239 had an increased activity resulting from a reduction in stability. Thus, Arg239 appears to play a role in maintaining the architecture of the active site. Electrostatic calculations performed on the wild-type and mutant forms of the enzyme are in good agreement with the experimental results. These findings, along with docking studies, suggest that prior to conjugation, the location of 1-menaphthyl sulfate, a model substrate for the sulfatase reaction, is approximately midway between the position ultimately occupied by the naphthalene ring of 1-menaphthylglutathione and the free sulfate. It is further proposed that the Arg residues in and around the sulfate binding pocket have a role in electrostatic substrate recognition.
机译:人Theta类谷胱甘肽转移酶GSTT2-2具有新颖的硫酸酯酶活性,该活性不依赖于活性位点中保守的氢键供体的存在。最初的同源性建模和晶体学研究确定了三个保守的Arg残基,这些残基有助于(Arg107和Arg239)的形成以及进入(Arg242)的硫酸盐结合腔。这些残基已单独突变为Ala,以研究其在底物结合和催化中的潜在作用。 Arg107突变对硫酸酯酶反应有明显的不利影响,而Arg242突变仅引起硫酸酯酶活性的小幅下降。出人意料的是,由于稳定​​性降低,Arg239具有增加的活性。因此,Arg239似乎在维护活动站点的体系结构中发挥了作用。对酶的野生型和突变型进行的静电计算与实验结果非常吻合。这些发现以及对接研究表明,在缀合之前,硫酸硫酸酶反应的模型底物硫酸1-甲萘酯的位置大约在1-甲萘基谷胱甘肽的萘环最终占据的位置与游离硫酸盐之间的中间位置。 。进一步提出,硫酸盐结合口袋中和周围的Arg残基在静电底物识别中起作用。

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