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首页> 外文期刊>Journal of Molecular Biology >Probing the mechanism of GSH activation in Schistosoma haematobium glutathione-S-transferase by site-directed mutagenesis and X-ray crystallography.
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Probing the mechanism of GSH activation in Schistosoma haematobium glutathione-S-transferase by site-directed mutagenesis and X-ray crystallography.

机译:通过定点诱变和X射线晶体学探讨血吸虫谷胱甘肽-S-转移酶中GSH激活的机制。

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摘要

During turnover, the catalytic tyrosine residue (Tyr10) of the sigma class Schistosoma haematobium wild-type glutathione-S-transferase is expected to switch alternately in and out of the reduced glutathione-binding site (G-site). The Tyrout10 conformer forms a pi-cation interaction with the guanidinium group of Arg21. As in other similar glutathione-S-transferases, the catalytic Tyr has a low pKa of 7.2. In order to investigate the catalytic role of Tyr10, and the structural and functional roles of Arg21, we carried out structural studies on two Arg21 mutants (R21L and R21Q) and a Tyr10 mutant, Y10F. Our crystallographic data for the two Arg21 mutants indicate that only the Tyrout10 conformation is populated, thereby excluding a role of Arg21 in the stabilisation of the out conformation. However, Arg21 was confirmed to be catalytically important and essential for the low pKa of Tyr10. Upon comparison with structural data generated for reduced glutathione-bound and inhibitor-bound wild-type enzymes, it was observed that the orientations of Tyr10 and Arg35 are concerted and that, upon ligand binding, minor rearrangements occur within conserved residues in the active site loop. These rearrangements are coupled to quaternary rigid-body movements at the dimer interface and alterations in the localisation and structural order of the C-terminal domain.
机译:在营业期间,西格玛类血吸虫野生型谷胱甘肽-S-转移酶的催化酪氨酸残基(Tyr10)可以交替进入和退出还原的谷胱甘肽结合位点(G-site)。 Tyrout10构象异构体与Arg21的胍基形成π-阳离子相互作用。与其他类似的谷胱甘肽-S-转移酶一样,催化的Tyr具有7.2的低pKa。为了研究Tyr10的催化作用以及Arg21的结构和功能作用,我们对两个Arg21突变体(R21L和R21Q)和一个Tyr10突变体Y10F进行了结构研究。我们的两个Arg21突变体的晶体学数据表明,仅填充了Tyrout10构象,从而排除了Arg21在稳定构象中的作用。但是,已证实Arg21对于Tyr10的低pKa具有催化作用,是必不可少的。与针对减少的谷胱甘肽结合和抑制剂结合的野生型酶产生的结构数据进行比较后,观察到Tyr10和Arg35的方向一致,并且在配体结合后,活性位点环的保守残基内发生了较小的重排。这些重排与二聚体界面处的四级刚体运动以及C端结构域的定位和结构顺序的变化有关。

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