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固醇调节结合蛋白(ORP)的固醇配体结合作用可调节ORP-VAPA复合物的亚细胞分布及其对细胞器结构的影响。

Sterol liganding of OSBP-related proteins (ORPs) regulates the subcellular distribution of ORP-VAPA complexes and their impacts on organelle structure.

作者信息

Kentala Henriikka, Pfisterer Simon G, Olkkonen Vesa M, Weber-Boyvat Marion

机构信息

Minerva Foundation Institute for Medical Research, Biomedicum 2U, FI-00290 Helsinki, Finland.

Institute of Biomedicine, Anatomy, FI-00014 University of Helsinki, Finland.

出版信息

Steroids. 2015 Jul;99(Pt B):248-58. doi: 10.1016/j.steroids.2015.01.027. Epub 2015 Feb 11.

Abstract

Oxysterol-binding protein (OSBP) and its homologues (ORPs) are lipid-binding/transfer proteins with affinity for oxysterols, cholesterol and glycerophospholipids. In addition to a ligand-binding domain, a majority of the ORPs carry a pleckstrin homology domain that targets organelle membranes via phosphoinositides, and a motif targeting the endoplasmic reticulum (ER) via VAMP-associated proteins (VAPs). We employed here Bimolecular Fluorescence Complementation (BiFC) to systematically assess the effects of sterol manipulation of HuH7 cells on complexes of established sterol-binding ORPs with their ER receptor, VAMP-associated protein A (VAPA). Depletion of cellular cholesterol with lipoprotein-deficient medium and Mevastatin caused concentration of OSBP-VAPA complexes and Golgi complex markers at a juxtanuclear position, an effect reversed by low-density lipoprotein treatment. A similar redistribution of OSBP-VAPA but not of sterol-binding deficient mutant OSBP(ΔELSK)-VAPA, occurred upon treatment with the high-affinity ligand, 25-hydroxycholesterol (25OHC), which reduced total and free cholesterol. ORP2-VAPA complexes, which localize in untreated cells at blob-like ER structures with associated lipid droplets, were redistributed upon treatment with the ORP2 ligand 22(R)OHC to a diffuse cytoplasmic/ER pattern and the plasma membrane. Analogously, distribution of ORP4L-VAPA complexes between the plasma membrane and vimentin intermediate filament associated compartments was modified by statin or 25OHC treatment. The treatments resulted in loss of vimentin co-localization, and sterol-binding deficient ORP4L(ΔELSR)-VAPA localized predominantly to the plasma membrane. In conclusion, treatment with statin or oxysterol ligands modify the subcellular targeting of ORP-VAPA complexes, consistent with the notion that this machinery controls lipid homeostasis and signaling at organelle interfaces.

摘要

氧化甾醇结合蛋白(OSBP)及其同系物(ORPs)是对氧化甾醇、胆固醇和甘油磷脂具有亲和力的脂质结合/转运蛋白。除了配体结合结构域外,大多数ORPs还带有一个通过磷酸肌醇靶向细胞器膜的普列克底物蛋白同源结构域,以及一个通过VAMP相关蛋白(VAPs)靶向内质网(ER)的基序。我们在此采用双分子荧光互补(BiFC)技术,系统评估了HuH7细胞中甾醇操纵对已确定的甾醇结合ORPs与其ER受体VAMP相关蛋白A(VAPA)复合物的影响。用缺乏脂蛋白的培养基和洛伐他汀消耗细胞胆固醇,导致OSBP-VAPA复合物和高尔基体复合物标记物在近核位置聚集,低密度脂蛋白处理可逆转这种效应。用高亲和力配体25-羟基胆固醇(25OHC)处理后,OSBP-VAPA发生了类似的重新分布,但甾醇结合缺陷突变体OSBP(ΔELSK)-VAPA没有,25OHC降低了总胆固醇和游离胆固醇。ORP2-VAPA复合物在未处理细胞中定位于具有相关脂滴的斑点状ER结构上,用ORP2配体22(R)OHC处理后,其重新分布到弥漫性细胞质/ER模式和质膜。类似地,他汀或25OHC处理改变了ORP4L-VAPA复合物在质膜和波形蛋白中间丝相关区室之间的分布。这些处理导致波形蛋白共定位丧失,甾醇结合缺陷的ORP4L(ΔELSR)-VAPA主要定位于质膜。总之,他汀或氧化甾醇配体处理改变了ORP-VAPA复合物的亚细胞靶向定位,这与该机制控制细胞器界面脂质稳态和信号传导的观点一致。

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