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Oxysterol-binding-protein (OSBP)-related protein 4 binds 25-hydroxycholesterol and interacts with vimentin intermediate filaments.

机译:氧固醇结合蛋白(OSBP)相关蛋白4结合25-羟基胆固醇并与波形蛋白中间丝相互作用。

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摘要

Oxysterol-binding protein (OSBP) is the prototypical member of a class of phospholipid and oxysterol-binding proteins that interacts with the Golgi apparatus and regulates lipid and cholesterol metabolism. As a result of recent sequencing efforts, eleven other OSBP-related proteins (ORPs) have been identified in humans. We have investigated the structure, oxysterol-binding activity, cellular localization and function of ORP4 (also designated OSBP2 or HLM), a homologue that shares the highest degree of similarity with OSBP. Two ORP4 cDNAs were identified: a full-length ORP4 containing a pleckstrin homology (PH) domain and an oxysterol-binding region (designated ORP4-L), and a splice variant in which the PH domain and part of the oxysterol-binding domain were deleted (designated ORP4-S). ORP4 mRNA and protein expression overlapped partially with OSBP and were restricted to brain, heart, muscle and kidney. Like OSBP, ORP4-L bound [3H]25-hydroxycholesterol with high affinity and specificity. In contrast, ORP4-S did not bind [3H]25-hydroxycholesterol or [3H]7-ketocholesterol. Immunofluorescence localization in stably transfected Chinese hamster ovary cells showed that ORP4-S co-localized with vimentin and caused the intermediate filament network to bundle or aggregate. ORP4-L displayed a diffuse staining pattern that did not overlap with vimentin except when the microtubule network was disrupted with nocodazole. Oxysterols had no effect on the localization of either ORP4. Cells overexpressing ORP4-S had a 40% reduction in the esterification of low-density-lipoprotein-derived cholesterol, demonstrating that ORP4 interaction with intermediate filaments inhibits an intracellular cholesterol-transport pathway mediated by vimentin. These studies elucidate a hitherto unknown relationship between OSBPs and the intermediate filament network that influences cholesterol transport.
机译:氧固醇结合蛋白(OSBP)是一类磷脂和氧固醇结合蛋白的原型成员,与高尔基体相互作用并调节脂质和胆固醇的代谢。作为最近测序工作的结果,已在人体中鉴定出11种其他OSBP相关蛋白(ORP)。我们研究了ORP4(也称为OSBP2或HLM)的结构,氧固醇结合活性,细胞定位和功能,这是与OSBP具有最高相似度的同源物。鉴定出两个ORP4 cDNA:一个全长ORP4,其包含一个pleckstrin同源性(PH)域和一个氧固醇结合区(称为ORP4-L),以及一个剪接变体,其中PH结构域和部分氧固醇结合域是删除(指定为ORP4-S)。 ORP4 mRNA和蛋白表达与OSBP部分重叠,并局限于脑,心脏,肌肉和肾脏。像OSBP一样,ORP4-L以高亲和力和特异性结合[3H] 25-羟基胆固醇。相反,ORP4-S不结合[3H] 25-羟基胆固醇或[3H] 7-酮胆固醇。在稳定转染的中国仓鼠卵巢细胞中的免疫荧光定位显示ORP4-S与波形蛋白共定位,并导致中间的细丝网络成束或聚集。 ORP4-L显示出弥漫性染色模式,与波形蛋白不重叠,除非用诺考达唑破坏了微管网络。氧固醇对任何ORP4的定位均无影响。过表达ORP4-S的细胞在低密度脂蛋白衍生的胆固醇的酯化反应中降低了40%,这表明ORP4与中间丝的相互作用抑制了波形蛋白介导的细胞内胆固醇转运途径。这些研究阐明了OSBP与影响胆固醇转运的中间丝网络之间迄今未知的关系。

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