首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Mitochondrial protein import machineries and lipids: a functional connection.
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Mitochondrial protein import machineries and lipids: a functional connection.

机译:线粒体蛋白的进口机制和脂质:功能性的联系。

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摘要

Protein trafficking and translocation are essential processes in even the simplest living cells. The compartmentalisation within eukaryotic cells places a very high demand on the fidelity of protein trafficking and translocation, since a large percentage of the cell's protein complement is inserted into, or translocated across membranes. Indeed, most mitochondrial proteins are imported from the cytosol into the organelle and reach their final destination with the assistance of versatile translocation machineries. The first components involved in mitochondrial protein import were identified about 20years ago and over the last two decades many new factors and machineries have been brought to light. However, in spite of these discoveries we still have much to explore regarding the molecular mechanisms that distinguish the different mitochondrial import pathways. In particular, an open question that requires deeper exploration is the role of lipids and lipid modifying enzymes in this process. Mitochondrial biogenesis requires the coordinated synthesis and import of both proteins and phospholipids, however, these have typically been considered as distinct research fields. Recent findings have placed phospholipids at the forefront of research dealing with mitochondrial biogenesis, in particular their role in the regulation of mitochondrial transport machineries. This article is part of a Special Issue entitled Protein translocation across or insertion into membranes.
机译:即使是最简单的活细胞,蛋白质的运输和转运也是必不可少的过程。真核细胞内的区室化对蛋白质运输和易位保真度提出了很高的要求,因为大部分细胞的蛋白质补体被插入或易位跨膜。的确,大多数线粒体蛋白是从细胞质中导入细胞器并在多功能易位机器的帮助下到达其最终目的地。大约在20年前就发现了涉及线粒体蛋白质进口的第一批成分,在过去的二十年中,许多新的因素和机制被发现。然而,尽管有这些发现,我们仍然需要就区分不同线粒体导入途径的分子机制进行大量探索。特别地,需要深入探索的一个开放问题是脂质和脂质修饰酶在此过程中的作用。线粒体的生物发生需要蛋白质和磷脂的协调合成和输入,然而,这些通常被认为是不同的研究领域。最近的发现将磷脂置于处理线粒体生物发生的研究的最前沿,尤其是它们在调节线粒体运输机械中的作用。本文是《蛋白质跨膜或插入膜易位》杂志特刊的一部分。

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