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STARD4 knockdown in HepG2 cells disrupts cholesterol trafficking associated with the plasma membrane ER and ERC

机译:HepG2细胞中的STARD4敲低会破坏与质膜ER和ERC相关的胆固醇运输

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摘要

STARD4, a member of the evolutionarily conserved START gene family, has been implicated in the nonvesicular intracellular transport of cholesterol. However, the direction of transport and the membranes with which this protein interacts are not clear. We present studies of STARD4 function using small hairpin RNA knockdown technology to reduce STARD4 expression in HepG2 cells. In a cholesterol-poor environment, we found that a reduction in STARD4 expression leads to retention of cholesterol at the plasma membrane, reduction of endoplasmic reticulum-associated cholesterol, and decreased ACAT synthesized cholesteryl esters. Furthermore, D4 KD cells exhibited a reduced rate of sterol transport to the endocytic recycling compartment after cholesterol repletion. Although these cells displayed normal endocytic trafficking in cholesterol-poor and replete conditions, cell surface low density lipoprotein receptor (LDLR) levels were increased and decreased, respectively. We also observed a decrease in NPC1 protein expression, suggesting the induction of compensatory pathways to maintain cholesterol balance. These data indicate a role for STARD4 in nonvesicular transport of cholesterol from the plasma membrane and the endocytic recycling compartment to the endoplasmic reticulum and perhaps other intracellular compartments as well.
机译:STARD4是进化上保守的START基因家族的成员,与胆固醇的非囊泡细胞内转运有关。然而,该蛋白相互作用的运输方向和膜尚不清楚。我们目前使用小发夹RNA敲低技术来减少HepG2细胞中STARD4表达的STARD4功能的研究。在胆固醇不足的环境中,我们发现STARD4表达的减少导致胆固醇在质膜上的保留,内质网相关胆固醇的减少以及ACAT合成的胆固醇酯的减少。此外,在胆固醇补充后,D4 KD细胞显示出降低的固醇向内吞再循环区的固醇转运速率。尽管这些细胞在胆固醇缺乏和充足的条件下显示正常的内吞运输,但细胞表面低密度脂蛋白受体(LDLR)的水平分别升高和降低。我们还观察到NPC1蛋白表达的下降,提示诱导了维持胆固醇平衡的补偿途径。这些数据表明STARD4在胆固醇从质膜和内吞再循环室到内质网以及可能在其他细胞内室的非囊泡运输中的作用。

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