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硫胺素焦磷酸(TPP)进入线粒体的分子机制:分子模拟研究。

Molecular mechanism of thiamine pyrophosphate import into mitochondria: a molecular simulation study.

机构信息

Structure et Fonction des Membranes Biologiques, Université Libre de Bruxelles (ULB), Brussels, Belgium.

Currently at Unité de glycobiologie structurale et fonctionnelle (UGSF), University Lille, CNRS, UMR 8576, Lille, France.

出版信息

J Comput Aided Mol Des. 2021 Sep;35(9):987-1007. doi: 10.1007/s10822-021-00414-5. Epub 2021 Aug 18.

DOI:10.1007/s10822-021-00414-5
PMID:34406552
Abstract

The import of thiamine pyrophosphate (TPP) through both mitochondrial membranes was studied using a total of 3-µs molecular dynamics simulations. Regarding the translocation through the mitochondrial outer membrane, our simulations support the conjecture that TPP uses the voltage-dependent anion channel, the major pore of this membrane, for its passage to the intermembrane space, as its transport presents significant analogies with that used by other metabolites previously studied, in particular with ATP. As far as passing through the mitochondrial inner membrane is concerned, our simulations show that the specific carrier of TPP has a single binding site that becomes accessible, through an alternating access mechanism. The preference of this transporter for TPP can be rationalized mainly by three residues located in the binding site that differ from those identified in the ATP/ADP carrier, the most studied member of the mitochondrial carrier family. The simulated transport mechanism of TPP highlights the essential role, at the energetic level, of the contributions coming from the formation and breakage of two networks of salt bridges, one on the side of the matrix and the other on the side of the intermembrane space, as well as the interactions, mainly of an ionic nature, formed by TPP upon its binding. The energy contribution provided by the cytosolic network establishes a lower barrier than that of the matrix network, which can be explained by the lower interaction energy of TPP on the matrix side or possibly a uniport activity.

摘要

我们使用总共 3 微秒的分子动力学模拟研究了焦磷酸硫胺素 (TPP) 通过线粒体双层膜的导入。关于通过线粒体外膜的易位,我们的模拟支持了以下推测:TPP 使用电压依赖性阴离子通道(该膜的主要孔道)作为其进入膜间空间的通道,因为其转运与先前研究的其他代谢物的转运具有明显的相似性,特别是与 ATP 的转运相似。就通过线粒体内膜而言,我们的模拟表明 TPP 的特定载体具有一个单一的结合位点,该位点通过交替访问机制变得可及。这种转运体对 TPP 的偏好可以主要通过位于结合位点的三个残基来合理化,这些残基与在 ATP/ADP 载体(线粒体载体家族中研究最多的成员)中鉴定的残基不同。TPP 模拟转运机制突出了在能量水平上,来自基质侧和膜间空间侧的两个盐桥网络的形成和断裂的贡献,以及 TPP 结合时形成的主要为离子性质的相互作用的重要作用。细胞质网络提供的能量贡献比基质网络的能量贡献低,这可以通过基质侧 TPP 的相互作用能较低或可能是单转运体活性来解释。

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