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首页> 外文期刊>Journal of Molecular Biology >Evidence for proton shuffling in a thioredoxin-like protein during catalysis.
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Evidence for proton shuffling in a thioredoxin-like protein during catalysis.

机译:催化过程中硫氧还蛋白样蛋白质子改组的证据。

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摘要

Proteins of the thioredoxin (Trx) superfamily catalyze disulfide-bond formation, reduction and isomerization in substrate proteins both in prokaryotic and in eukaryotic cells. All members of the Trx family with thiol-disulfide oxidoreductase activity contain the characteristic Cys-X-X-Cys motif in their active site. Here, using Poisson-Boltzmann-based protonation-state calculations based on 100-ns molecular dynamics simulations, we investigate the catalytic mechanism of DsbL, the most oxidizing Trx-like protein known to date. We observed several correlated transitions in the protonation states of the buried active-site cysteine and a neighboring lysine coupled to the exposure of the active-site thiolate. These results support the view of an internal proton shuffling mechanism during oxidation crucial for the uptake of two electrons from the substrate protein. Intramolecular disulfide-bond formation is probably steered by the conformational switch facilitating interaction with the active-site thiolate. A consistent catalytic mechanism for DsbL, probably conferrable to other proteins of the same class, is presented. Our results suggest a functional role of hydration entropy of active-site groups.
机译:硫氧还蛋白(Trx)超家族的蛋白质催化原核和真核细胞中底物蛋白质中二硫键的形成,还原和异构化。具有硫醇-二硫键氧化还原酶活性的Trx家族的所有成员在其活性位点均包含特征性的Cys-X-X-Cys主题。在这里,基于100 ns分子动力学模拟,使用基于Poisson-Boltzmann的质子化状态计算,我们研究了DsbL的催化机理,DsbL是迄今为止已知的最具氧化性的Trx样蛋白。我们观察到掩埋的活性位半胱氨酸和邻近的赖氨酸的质子化状态的几个相关的过渡耦合到活性位硫醇盐的暴露。这些结果支持了在氧化过程中内部质子改组机制的观点,这对于从底物蛋白质吸收两个电子至关重要。分子内二硫键的形成可能是由构象转换控制的,该构象转换促进了与活性部位硫醇盐的相互作用。提出了一致的DsbL催化机制,可能与其他同类蛋白质有关。我们的研究结果表明活性位点组的水合熵的功能作用。

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