Nakatsu Fubito, Kawasaki Asami
Department of Neurochemistry and Molecular Cell Biology, Niigata University School of Medicine and Graduate School of Medical/Dental Sciences, Niigata, Japan.
Front Cell Dev Biol. 2021 Jun 24;9:664788. doi: 10.3389/fcell.2021.664788. eCollection 2021.
Lipids must be correctly transported within the cell to the right place at the right time in order to be fully functional. Non-vesicular lipid transport is mediated by so-called lipid transfer proteins (LTPs), which contain a hydrophobic cavity that sequesters lipid molecules. Oxysterol-binding protein (OSBP)-related proteins (ORPs) are a family of LTPs known to harbor lipid ligands, such as cholesterol and phospholipids. ORPs act as a sensor or transporter of those lipid ligands at membrane contact sites (MCSs) where two different cellular membranes are closely apposed. In particular, a characteristic functional property of ORPs is their role as a lipid exchanger. ORPs mediate counter-directional transport of two different lipid ligands at MCSs. Several, but not all, ORPs transport their lipid ligand from the endoplasmic reticulum (ER) in exchange for phosphatidylinositol 4-phosphate (PI4P), the other ligand, on apposed membranes. This ORP-mediated lipid "countertransport" is driven by the concentration gradient of PI4P between membranes, which is generated by its kinases and phosphatases. In this review, we will discuss how ORP function is tightly coupled to metabolism of phosphoinositides such as PI4P. Recent progress on the role of ORP-mediated lipid transport/countertransport at multiple MCSs in cellular functions will be also discussed.
为了充分发挥功能,脂质必须在细胞内被正确地运输到合适的位置和时间。非囊泡脂质运输由所谓的脂质转运蛋白(LTPs)介导,这些蛋白含有一个隔离脂质分子的疏水腔。氧化甾醇结合蛋白(OSBP)相关蛋白(ORPs)是一类已知含有脂质配体(如胆固醇和磷脂)的LTPs。ORPs在膜接触位点(MCSs)充当这些脂质配体的传感器或转运体,在MCSs中,两种不同的细胞膜紧密相邻。特别是,ORPs的一个特征性功能特性是它们作为脂质交换器的作用。ORPs在MCSs介导两种不同脂质配体的反向运输。一些(但不是全部)ORPs将其脂质配体从内质网(ER)运输出来,以换取相邻膜上的另一种配体磷脂酰肌醇4-磷酸(PI4P)。这种由ORP介导的脂质“反向运输”由膜之间PI4P的浓度梯度驱动,该浓度梯度由其激酶和磷酸酶产生。在本综述中,我们将讨论ORP功能如何与磷脂酰肌醇(如PI4P)的代谢紧密相关。还将讨论ORP介导的脂质运输/反向运输在多个MCSs对细胞功能作用的最新进展。