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Insights into the catalytic mechanism of glutathione S-transferase the lesson from Schistosoma haematobium

机译:血吸虫血吸虫病中谷胱甘肽S-转移酶催化机理的见解

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摘要

Glutathione S-transferases (GSTs) are involved in detoxification of xenobiotic compounds and in the biosynthesis of important metabolites. All GSTs activate glutathione (GSH) to GS(-); in many GSTs, this is accomplished by a Tyr at H-bonding distance from the sulfur of GSH. The high-resolution structure of GST from Schistosoma haematobium, revealed that the catalytic Tyr occupies two alternative positions, one external, involving a pi-cation interaction with the conserved Arg21, and the other inside the GSH binding site. The interaction with Arg21 lowers the pK(a) of the catalytic Tyr10, as required for catalysis. Examination of several other GST structures revealed the presence of an external pocket that may accommodate the catalytic Tyr, and suggested that the change in conformation and acidic properties; of the catalytic Tyr may be shared by other GSTs. Arginine and two other residues of the external pocket constitute a conserved structural motif, clearly identified by sequence comparison.
机译:谷胱甘肽S-转移酶(GST)参与异种生物化合物的解毒和重要代谢产物的生物合成。所有GST都将谷胱甘肽(GSH)激活为GS(-);在许多GST中,这是通过在距GSH硫的H键距处有一个Tyr来实现的。血吸虫血吸虫的GST的高分辨率结构显示,催化的Tyr占据两个替代位置,一个外部,涉及与保守的Arg21的π-阳离子相互作用,另一个在GSH结合位点内部。根据催化需要,与Arg21的相互作用可降低催化Tyr10的pK(a)。考察了其他几种GST结构后发现存在一个可能容纳催化Tyr的外部囊,并提示其构象和酸性性质发生了变化。催化性Tyr的一部分可以与其他GST共享。外部口袋的精氨酸和另外两个残基构成保守的结构基序,通过序列比较可以清楚地鉴定。

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