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A Highlights from MBoC Selection: Role of STARD4 in sterol transport between the endocytic recycling compartment and the plasma membrane

机译:MBoC选择的亮点:STARD4在内吞再循环室和质膜之间固醇转运中的作用

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摘要

Cholesterol is an essential constituent of membranes in mammalian cells. The plasma membrane and the endocytic recycling compartment (ERC) are both highly enriched in cholesterol. The abundance and distribution of cholesterol among organelles are tightly controlled by a combination of mechanisms involving vesicular and nonvesicular sterol transport processes. Using the fluorescent cholesterol analogue dehydroergosterol, we examined sterol transport between the plasma membrane and the ERC using fluorescence recovery after photobleaching and a novel sterol efflux assay. We found that sterol transport between these organelles in a U2OS cell line has a t1/2 =12–15 min. Approximately 70% of sterol transport is ATP independent and therefore is nonvesicular. Increasing cellular cholesterol levels dramatically increases bidirectional transport rate constants, but decreases in cholesterol levels have only a modest effect. A soluble sterol transport protein, STARD4, accounts for ∼25% of total sterol transport and ∼33% of nonvesicular sterol transport between the plasma membrane and ERC. This study shows that nonvesicular sterol transport mechanisms and STARD4 in particular account for a large fraction of sterol transport between the plasma membrane and the ERC.
机译:胆固醇是哺乳动物细胞膜的重要组成部分。质膜和内吞循环室(ERC)都富含胆固醇。通过涉及囊泡和非囊泡固醇转运过程的多种机制的结合,可以严格控制细胞器中胆固醇的含量和分布。使用荧光胆固醇类似物脱氢麦角固醇,我们使用光漂白后的荧光回收率和新型固醇外排测定法检查了质膜和ERC之间的固醇转运。我们发现,U2OS细胞系中这些细胞器之间的固醇转运时间为t1 / 2 = 12–15分钟。大约70%的固醇转运是不依赖ATP的,因此是非囊泡的。增加细胞胆固醇水平会大大增加双向转运速率常数,但降低胆固醇水平只会产生适度的影响。可溶性固醇转运蛋白STARD4占质膜和ERC之间固醇转运总量的〜25%,非囊状固醇转运蛋白的〜33%。这项研究表明,非囊性固醇转运机制和STARD4尤其占了质膜和ERC之间固醇转运的很大一部分。

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