首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Decrypting protein insertion through the translocon with free-energy calculations
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Decrypting protein insertion through the translocon with free-energy calculations

机译:使用自由能计算通过translocon解密蛋白质插入

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摘要

Protein insertion into a membrane is a complex process involving numerous players. The most prominent of these players is the Sec translocon complex, a conserved protein-conducting channel present in the cytoplasmic membrane of bacteria and the membrane of the endoplasmic reticulum in eukaryotes. The last decade has seen tremendous leaps forward in our understanding of how insertion is managed by the translocon and its partners, coming from atomic-detailed structures, innovative experiments, and well-designed simulations. In this review, we discuss how experiments and simulations, hand-in-hand, teased out the secrets of the translocon-facilitated membrane insertion process. In particular, we focus on the role of free-energy calculations in elucidating membrane insertion. Amazingly, despite all its apparent complexity, protein insertion into membranes is primarily driven by simple thermodynamic and kinetic principles.
机译:蛋白质插入膜是一个复杂的过程,涉及众多参与者。这些参与者中最突出的是Sec translocon复合物,这是一种保守的蛋白质传导通道,存在于细菌的细胞质膜和真核生物的内质网膜中。在过去的十年中,我们了解了转位子及其伴侣如何管理插入的巨大飞跃,这些理解来自原子详细的结构,创新的实验和精心设计的模拟。在这篇综述中,我们讨论了如何携手进行实验和模拟,弄清了转运促进膜插入过程的秘密。特别是,我们着重于自由能计算在阐明膜插入中的作用。令人惊讶的是,尽管蛋白质看起来很复杂,但蛋白质插入膜的动力主要是由简单的热力学和动力学原理驱动的。

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