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首页> 外文期刊>Biochemistry >Neighboring group participation in the transition state of human purine nucleoside phosphorylase.
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Neighboring group participation in the transition state of human purine nucleoside phosphorylase.

机译:相邻基团参与人嘌呤核苷磷酸化酶的过渡态。

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摘要

The X-ray crystal structures of human purine nucleoside phosphorylase (PNP) with bound inosine or transition-state analogues show His257 within hydrogen bonding distance of the 5'-hydroxyl. The mutants His257Phe, His257Gly, and His257Asp exhibited greatly decreased affinity for Immucillin-H (ImmH), binding this mimic of an early transition state as much as 370-fold (Km/Ki) less tightly than native PNP. In contrast, these mutants bound DADMe-ImmH, a mimic of a late transition state, nearly as well as the native enzyme. These results indicate that His257 serves an important role in the early stages of transition-state formation. Whereas mutation of His257 resulted in little variation in the PNP x DADMe-ImmH x SO4 structures, His257Phe x ImmH x PO4 showed distortion at the 5'-hydroxyl, indicating the importance of H-bonding in positioning this group during progression to the transition state. Binding isotope effect (BIE) and kinetic isotope effect (KIE) studies of the remote 5'-(3)H for the arsenolysis ofinosine with native PNP revealed a BIE of 1.5% and an unexpectedly large intrinsic KIE of 4.6%. This result is interpreted as a moderate electronic distortion toward the transition state in the Michaelis complex with continued development of a similar distortion at the transition state. The mutants His257Phe, His257Gly, and His257Asp altered the 5'-(3)H intrinsic KIE to -3, -14, and 7%, respectively, while the BIEs contributed 2, 2, and -2%, respectively. These surprising results establish that forces in the Michaelis complex, reported by the BIEs, can be reversed or enhanced at the transition state.
机译:具有结合的肌苷或过渡态类似物的人嘌呤核苷磷酸化酶(PNP)的X射线晶体结构在5'-羟基的氢键距离内显示His257。突变体His257Phe,His257Gly和His257Asp表现出对Immucillin-H(ImmH)的亲和力大大降低,与早期PNP相比,这种类似早期过渡状态的模拟物的结合力降低了370倍(Km / Ki)。相反,这些突变体与天然过渡酶结合的是DADMe-ImmH,后者是后期过渡状态的模拟物。这些结果表明,His257在过渡态形成的早期阶段起着重要作用。 His257的突变导致PNP x DADMe-ImmH x SO4结构几乎没有变化,而His257Phe x ImmH x PO4在5'-羟基处显示出畸变,表明在过渡到过渡态过程中H键对定位该基团的重要性。远距离5'-(3)H用天然PNP对肌苷进行砷解毒的结合同位素效应(BIE)和动力学同位素效应(KIE)研究显示,其BIE为1.5%,而意料之外的大固有KIE为4.6%。该结果被解释为在迈可利斯络合物中向过渡态的适度电子畸变,并且在过渡态继续产生相似的畸变。突变体His257Phe,His257Gly和His257Asp将5'-(3)H固有KIE分别更改为-3,-14和7%,而BIE分别贡献了2%,2%和-2%。这些令人惊讶的结果表明,由BIE报告的Michaelis复合体中的作用力可以在过渡状态下逆转或增强。

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