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START 将脂质运输到细胞器间空间。

START ships lipids across interorganelle space.

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), UMR 7104 CNRS/U964 INSERM/Université de Strasbourg, BP10142, Illkirch, 67404 C.U. de Strasbourg, France.

出版信息

Biochimie. 2014 Jan;96:85-95. doi: 10.1016/j.biochi.2013.09.015. Epub 2013 Sep 25.

Abstract

The family of StAR related lipid transfer proteins (START) is so-named based on the distinctive capacity for these proteins to transport lipids between membranes. The START domain is a module of about 210 residues, which binds lipids such as glycerolipids, sphingolipids and sterols. This domain has a deep lipid-binding pocket - which shields the hydrophic ligand from the external aqueous environment - covered by a lid. Based on their homology, the fifteen START proteins in mammals have been allocated to six distinct subfamilies, each subfamily being more specialized in the transport and/or sensing of a lipid ligand species. However within the same subgroup, their expression profile and their subcellular localization distinguish them and are critical for their different biological functions. Indeed, START proteins act in a variety of distinct physiological processes, such as lipid transfer between intracellular compartments, lipid metabolism and modulation of signaling events. Mutation or deregulated expression of START proteins is linked to pathological processes, including genetic disorders, autoimmune diseases and cancers. Besides the common single START domain, which is always located at the carboxy-terminal end in mammals, most START proteins harbor additional domains predicted to be critical in favoring lipid exchange. Evidence from well characterized START proteins indicates that these additional domains might be tethering machineries able to bring distinct organelles together and create membrane contact sites prone to lipid exchange via the START domain.

摘要

StAR 相关脂质转运蛋白(START)家族之所以得名,是因为这些蛋白具有在膜之间转运脂质的独特能力。START 结构域是一个约 210 个残基的模块,它结合甘油磷脂、鞘脂和固醇等脂质。该结构域有一个深的脂质结合口袋,其将亲水性配体与外部水相环境隔离,由一个盖子覆盖。根据它们的同源性,哺乳动物中的十五种 START 蛋白被分配到六个不同的亚家族,每个亚家族在运输和/或感知特定的脂质配体方面更加专业化。然而,在同一亚组内,它们的表达谱和亚细胞定位将它们区分开来,这对于它们不同的生物学功能至关重要。事实上,START 蛋白在多种不同的生理过程中发挥作用,例如细胞内隔室之间的脂质转移、脂质代谢和信号事件的调节。START 蛋白的突变或表达失调与病理过程有关,包括遗传疾病、自身免疫性疾病和癌症。除了在哺乳动物中始终位于羧基末端的常见单一 START 结构域外,大多数 START 蛋白还具有预测对脂质交换至关重要的其他结构域。来自特征明确的 START 蛋白的证据表明,这些附加结构域可能是固定机制,能够将不同的细胞器聚集在一起,并通过 START 结构域在易于脂质交换的膜接触部位形成。

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