Beh Christopher T, Alfaro Gabriel, Duamel Giselle, Sullivan David P, Kersting Michael C, Dighe Shubha, Kozminski Keith G, Menon Anant K
Department of Molecular Biology & Biochemistry, Simon Fraser University, 8888 University Drive, Burnaby, BC, V5A 1S6, Canada.
Mol Cell Biochem. 2009 Jun;326(1-2):9-13. doi: 10.1007/s11010-008-9999-7. Epub 2009 Jan 1.
Oxysterol-binding protein (OSBP) and OSBP-related proteins (ORPs) are a conserved family of soluble cytoplasmic proteins that can bind sterols, translocate between membrane compartments, and affect sterol trafficking. These properties make ORPs attractive candidates for lipid transfer proteins (LTPs) that directly mediate nonvesicular sterol transfer to the plasma membrane. To test whether yeast ORPs (the Osh proteins) are sterol LTPs, we studied endoplasmic reticulum (ER)-to-plasma membrane (PM) sterol transport in OSH deletion mutants lacking one, several, or all Osh proteins. In conditional OSH mutants, ER-PM ergosterol transport slowed approximately 20-fold compared with cells expressing a full complement of Osh proteins. Although this initial finding suggested that Osh proteins act as sterol LTPs, the situation is far more complex. Osh proteins have established roles in Rho small GTPase signaling. Osh proteins reinforce cell polarization and they specifically affect the localization of proteins involved in polarized cell growth such as septins, and the GTPases Cdc42p, Rho1p, and Sec4p. In addition, Osh proteins are required for a specific pathway of polarized secretion to sites of membrane growth, suggesting that this is how Osh proteins affect Cdc42p- and Rho1p-dependent polarization. Our findings suggest that Osh proteins integrate sterol trafficking and sterol-dependent cell signaling with the control of cell polarization.
氧化甾醇结合蛋白(OSBP)和OSBP相关蛋白(ORPs)是一类保守的可溶性细胞质蛋白家族,它们能够结合甾醇,在膜区室之间转运,并影响甾醇的运输。这些特性使ORPs成为脂质转运蛋白(LTPs)的有力候选者,脂质转运蛋白可直接介导非囊泡甾醇向质膜的转运。为了测试酵母ORPs(Osh蛋白)是否为甾醇LTPs,我们研究了缺乏一种、几种或所有Osh蛋白的OSH缺失突变体中内质网(ER)到质膜(PM)的甾醇运输。在条件性OSH突变体中,与表达完整Osh蛋白的细胞相比,ER-PM麦角甾醇运输速度减慢了约20倍。尽管这一初步发现表明Osh蛋白作为甾醇LTPs发挥作用,但情况要复杂得多。Osh蛋白在Rho小GTP酶信号传导中已确立了作用。Osh蛋白增强细胞极化,它们特别影响参与极化细胞生长的蛋白质的定位,如隔膜蛋白,以及GTP酶Cdc42p、Rho1p和Sec4p。此外,Osh蛋白是极化分泌到膜生长部位的特定途径所必需的,这表明这就是Osh蛋白影响Cdc42p和Rho1p依赖性极化的方式。我们的研究结果表明,Osh蛋白将甾醇运输和甾醇依赖性细胞信号传导与细胞极化的控制整合在一起。