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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Arginine 15 stabilizes an S(N)Ar reaction transition state and the binding of anionic ligands at the active site of human glutathione transferase A1-1.
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Arginine 15 stabilizes an S(N)Ar reaction transition state and the binding of anionic ligands at the active site of human glutathione transferase A1-1.

机译:精氨酸15稳定人谷胱甘肽转移酶A1-1的活性位点的S(N)Ar反应过渡态和阴离子配体的结合。

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摘要

Arg15, conserved in class Alpha GSTs (glutathione transferases), is located at the interface between the G- and H-sites of the active site where its cationic guanidinium group might play a role in catalysis and ligand binding. Arg15 in human GSTA1-1 was replaced with a leucine and crystallographic, spectroscopic, thermodynamic and molecular docking methods were used to investigate the contribution made by Arg15 towards (i) the binding of glutathione (GSH) to the G-site, (ii) the pK(a) of the thiol group of GSH, (iii) the stabilization of an analog of the anionic transition state of the S(N)Ar reaction between 1-chloro-2,4-dinitrobenzene (CDNB) and GSH, and, (iv) the binding of the anionic non-substrate ligand 8-anilino-1-naphthalene sulphonate (ANS) to the H-site. While the R15L mutation substantially diminishes the CDNB-GSH conjugating activity of the enzyme, it has little effect on protein structure and stability. Arg15 does not contribute significantly towards the enzyme's affinity for GSH but does determine the reactivity of GSH by reducing the thiol's pK(a) from 7.6 to 6.6. The anionic sigma-complex formed between GSH and 1,3,5-trinitrobenzene is stabilized by Arg15, suggesting that it also stabilizes the transition state formed in the S(N)Ar reaction between GSH and CDNB. The trinitrocyclohexadienate moiety of the sigma-complex binds the H-site where the catalytic residue, Tyr9, was identified to hydrogen bond to an o-nitro group of the sigma-complex. The affinity for ANS at the H-site is decreased about 3-fold by the R15L mutation implicating the positive electrostatic potential of Arg15 in securing the organic anion at this site.
机译:Arg15是Alpha GST类(谷胱甘肽转移酶)中的保守分子,位于活性位点的G位和H位之间的界面上,在该界面上其阳离子胍盐基团可能在催化和配体结合中起作用。将人GSTA1-1中的Arg15替换为亮氨酸,并使用晶体学,光谱学,热力学和分子对接方法研究Arg15对(i)谷胱甘肽(GSH)与G位点的结合所做出的贡献,(ii) GSH巯基的pK(a),(iii)1-氯-2,4-二硝基苯(CDNB)与GSH之间S(N)Ar反应的阴离子过渡态类似物的稳定化,以及(iv)阴离子非底物配体8-苯胺基-1-萘磺酸盐(ANS)与H位的结合。尽管R15L突变实质上降低了酶的CDNB-GSH结合活性,但对蛋白质结构和稳定性的影响很小。 Arg15不会显着提高酶对GSH的亲和力,但会通过将硫醇的pK(a)从7.6降低至6.6来确定GSH的反应性。 GSH和1,3,5-三硝基苯之间形成的阴离子sigma-complex是由Arg15稳定的,这表明它也可以稳定GSH和CDNB之间的S(N)Ar反应中形成的过渡态。 sigma复合物的三硝基环己二酸酯部分与H位点结合,在该H位点,催化残基Tyr9被鉴定为与sigma复合物的邻硝基氢键结合。 H15位点对ANS的亲和力通过R15L突变而降低了约3倍,这暗示了Arg15的正静电势能确保该位点上的有机阴离子的安全。

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