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Lysosomal integral membrane protein-2 as a phospholipid receptor revealed by biophysical and cellular studies

机译:生物物理和细胞研究显示溶酶体整合膜蛋白2作为磷脂受体

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摘要

Lysosomal integral membrane protein-2 (LIMP-2/SCARB2) contributes to endosomal and lysosomal function. LIMP-2 deficiency is associated with neurological abnormalities and kidney failure and, as an acid glucocerebrosidase receptor, impacts Gaucher and Parkinson’s diseases. Here we report a crystal structure of a LIMP-2 luminal domain dimer with bound cholesterol and phosphatidylcholine. Binding of these lipids alters LIMP-2 from functioning as a glucocerebrosidase-binding monomer toward a dimeric state that preferentially binds anionic phosphatidylserine over neutral phosphatidylcholine. In cellular uptake experiments, LIMP-2 facilitates transport of phospholipids into murine fibroblasts, with a strong substrate preference for phosphatidylserine. Taken together, these biophysical and cellular studies define the structural basis and functional importance of a form of LIMP-2 for lipid trafficking. We propose a model whereby switching between monomeric and dimeric forms allows LIMP-2 to engage distinct binding partners, a mechanism that may be shared by SR-BI and CD36, scavenger receptor proteins highly homologous to LIMP-2.
机译:溶酶体整合膜蛋白2(LIMP-2 / SCARB2)有助于内体和溶酶体功能。 LIMP-2缺乏症与神经系统异常和肾功能衰竭有关,并且作为酸性葡萄糖脑苷脂酶受体会影响高雪和帕金森氏病。在这里,我们报告与绑定的胆固醇和磷脂酰胆碱的LIMP-2腔域二聚体的晶体结构。这些脂质的结合使LIMP-2从作为葡糖脑苷脂酶结合单体的功能变为二聚态,该二聚态优先于中性磷脂酰胆碱结合阴离子磷脂酰丝氨酸。在细胞摄取实验中,LIMP-2促进磷脂向鼠成纤维细胞的转运,对磷脂酰丝氨酸有强烈的底物偏爱。总之,这些生物物理和细胞研究确定了LIMP-2形式对脂质运输的结构基础和功能重要性。我们提出了一种模型,其中单体和二聚体形式之间的转换允许LIMP-2参与不同的结合伴侣,该机制可能与SR-BI和CD36(与LIMP-2高度同源的清道夫受体蛋白)共有。

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