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非囊泡脂质转运的遗传与生化分析

Genetic and biochemical analysis of non-vesicular lipid traffic.

作者信息

Voelker Dennis R

机构信息

Program in Cell Biology, Department of Medicine, National Jewish Health, Denver, CO 80206, USA.

出版信息

Annu Rev Biochem. 2009;78:827-56. doi: 10.1146/annurev.biochem.78.081307.112144.

Abstract

Robust lipid traffic within and among membranes is essential for cell growth and membrane biogenesis. Many of these transport reactions occur by nonvesicular pathways, and the genetic and biochemical details of these processes are now beginning to emerge. Intramembrane lipid transport reactions utilize P-type ATPases, ABC transporters, scramblases, and Niemann-Pick type C (NPC) family proteins. The intramembrane processes regulate the establishment and elimination of membrane lipid asymmetry, the cellular influx and efflux of sterols and phospholipids, and the egress of lysosomally deposited lipids. The intermembrane lipid transport processes play important roles in membrane biogenesis, sterol sequestration, and steroid hormone formation. The roles of soluble lipid carriers and membrane-bound lipid-transporting complexes, as well as the mechanisms for regulation of their targeting and assembly, are now becoming apparent. Elucidation of the details of these systems is providing new perspectives on the regulation of lipid traffic within cells.

摘要

膜内及膜间强劲的脂质转运对于细胞生长和膜生物合成至关重要。许多此类转运反应通过非囊泡途径发生,这些过程的遗传和生化细节如今正开始显现。膜内脂质转运反应利用P型ATP酶、ABC转运蛋白、翻转酶和尼曼-匹克C型(NPC)家族蛋白。膜内过程调节膜脂质不对称性的建立和消除、固醇和磷脂的细胞内流和外流,以及溶酶体沉积脂质的流出。膜间脂质转运过程在膜生物合成、固醇隔离和类固醇激素形成中发挥重要作用。可溶性脂质载体和膜结合脂质转运复合物的作用,以及其靶向和组装的调节机制,如今正变得清晰。对这些系统细节的阐明为细胞内脂质转运的调节提供了新的视角。

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