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首页> 外文期刊>Journal of Cell Science >The ER membrane protein complex promotes biogenesis of sterol-related enzymes maintaining cholesterol homeostasis
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The ER membrane protein complex promotes biogenesis of sterol-related enzymes maintaining cholesterol homeostasis

机译:ER膜蛋白复合物促进与甾醇相关酶的生物发生维持胆固醇稳态

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The eukaryotic endoplasmic reticulum (ER) membrane contains essential complexes that oversee protein biogenesis and lipid metabolism, impacting nearly all aspects of cell physiology. The ER membrane protein complex (EMC) is a newly described transmembrane domain (TMD) insertase linked with various phenotypes, but whose clients and cellular responsibilities remain incompletely understood. We report that EMC deficiency limits the cellular boundaries defining cholesterol tolerance, reflected by diminished viability with limiting or excessive extracellular cholesterol. Lipidomic and proteomic analyses revealed defective biogenesis and concomitant loss of the TMD-containing ER-resident enzymes sterol-O-acyltransferase 1 (SOAT1) and squalene synthase (SQS, also known as FDFT1), which serve strategic roles in the adaptation of cells to changes in cholesterol availability. Insertion of the weakly hydrophobic tail-anchor (TA) of SQS into the ER membrane by the EMC ensures sufficient flux through the sterol biosynthetic pathway while biogenesis of polytopic SOAT1 promoted by the EMC provides cells with the ability to store free cholesterol as inert cholesteryl esters. By facilitating insertion of TMDs that permit essential mammalian sterol-regulating enzymes to mature accurately, the EMC is an important biogenic determinant of cellular robustness to fluctuations in cholesterol availability.
机译:真核内质网(ER)膜含有含有蛋白质生物发生和脂质代谢的基本复合物,影响细胞生理学的几乎所有方面。 ER膜蛋白复合物(EMC)是一种与各种表型连接的新描述的跨膜结构域(TMD)嵌件,但其客户端和细胞责任仍然不完全理解。我们认为EMC缺陷限制了定义胆固醇耐受性的细胞边界,其通过限制或过度细胞外胆固醇的减少可活力而反映。脂质化和蛋白质组学分析显示出缺陷的生物发生和伴随含TMD的ER族酶甾醇-O-酰基转移酶1(SOAT1)和Squalene合酶(SQS,也称为FDFT1)的丧失丧失,其在细胞适应中提供战略作用胆固醇可用性的变化。通过EMC插入SQS的弱疏水性尾锚(TA)进入ER膜,确保通过甾醇生物合成途径足够的通量,而EMC促进的多粒子SOAT1的生物发生提供细胞,其能够将自由胆固醇存放在惰性胆固醇中的能力。通过促进允许精确成熟的必需哺乳动物甾醇调节酶的TMDS,EMC是胆固醇可用性波动波动的重要生物学决定因素。

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