Mesmin Bruno, Antonny Bruno
Institut de Pharmacologie Moléculaire et Cellulaire, Université de Nice Sophia-Antipolis and CNRS, 06560 Valbonne, France.
Biochim Biophys Acta. 2016 Aug;1861(8 Pt B):940-951. doi: 10.1016/j.bbalip.2016.02.024. Epub 2016 Feb 27.
Cholesterol levels in intracellular membranes are constantly adjusted to match with specific organelle functions. Cholesterol is kept high in the plasma membrane (PM) because it is essential for its barrier function, while low levels are found in the endoplasmic reticulum (ER) where cholesterol mediates feedback control of its own synthesis by sterol-sensor proteins. The ER→Golgi→PM concentration gradient of cholesterol in mammalian cells, and ergosterol in yeast, appears to be sustained by specific intracellular transport processes, which are mostly mediated by lipid transfer proteins (LTPs). Here we review a recently described function of two LTPs, OSBP and its yeast homolog Osh4p, which consists in creating a sterol gradient between membranes by vectorial transport. OSBP also contributes to the formation of ER/Golgi membrane contact sites, which are important hubs for the transfer of several lipid species. OSBP and Osh4p organize a counterflow transport of lipids whereby sterols are exchanged for the phosphoinositide PI4P, which is used as a fuel to drive sterol transport. This article is part of a Special Issue entitled: The cellular lipid landscape edited by Tim P. Levine and Anant K. Menon.
细胞内膜中的胆固醇水平会不断调整,以匹配特定细胞器的功能。胆固醇在质膜(PM)中含量较高,因为这对其屏障功能至关重要,而在内质网(ER)中含量较低,胆固醇在内质网中通过固醇传感器蛋白介导对自身合成的反馈控制。哺乳动物细胞中胆固醇以及酵母中麦角固醇的内质网→高尔基体→质膜浓度梯度似乎是由特定的细胞内运输过程维持的,这些过程大多由脂质转运蛋白(LTP)介导。在此,我们综述了最近描述的两种LTP(OSBP及其酵母同源物Osh4p)的功能,即通过定向运输在膜之间形成固醇梯度。OSBP还有助于内质网/高尔基体膜接触位点的形成,这些位点是几种脂质转移的重要枢纽。OSBP和Osh4p组织脂质的逆流运输,即固醇与磷酸肌醇PI4P交换,PI4P用作驱动固醇运输的燃料。本文是名为:细胞脂质格局的特刊的一部分,由蒂姆·P·莱文和阿南特·K·梅农编辑。