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经NBD标记的磷脂酰胆碱和磷脂酰乙醇胺通过跨双层转运穿过酵母质膜而被内化。

NBD-labeled phosphatidylcholine and phosphatidylethanolamine are internalized by transbilayer transport across the yeast plasma membrane.

作者信息

Grant A M, Hanson P K, Malone L, Nichols J W

机构信息

Department of Physiology, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Traffic. 2001 Jan;2(1):37-50. doi: 10.1034/j.1600-0854.2001.020106.x.

DOI:10.1034/j.1600-0854.2001.020106.x
PMID:11208167
Abstract

The internalization and distribution of fluorescent analogs of phosphatidylcholine (M-C6-NBD-PC) and phosphatidylethanolamine (M-C6-NBD-PE) were studied in Saccharomyces cerevisiae. At normal growth temperatures, M-C6-NBD-PC was internalized predominantly to the vacuole and degraded. M-C6-NBD-PE was internalized to the nuclear envelope/ER and mitochondria, was not transported to the vacuole, and was not degraded. At 2 degrees C, both were internalized to the nuclear envelope/ER and mitochondria by an energy-dependent, N-ethylmaleimide-sensitive process, and transport of M-C6-NBD-PC to and degradation in the vacuole was blocked. Internalization of neither phospholipid was reduced in the endocytosis-defective mutant, end4-1. However, following pre-incubation at 37 degrees C, internalization of both phospholipids was inhibited at 2 degrees C and 37 degrees C in sec mutants defective in vesicular traffic. The sec18/NSF mutation was unique among the sec mutations in further blocking M-C6-NBD-PC translocation to the vacuole suggesting a dependence on membrane fusion. Based on these and previous observations, we propose that M-C6-NBD-PC and M-C6-NBD-PE are transported across the plasma membrane to the cytosolic leaflet by a protein-mediated, energy-dependent mechanism. From the cytosolic leaflet, both phospholipids are spontaneously distributed to the nuclear envelope/ER and mitochondria. Subsequently, M-C6-NBD-PC, but not M-C6-NBD-PE, is sorted by vesicular transport to the vacuole where it is degraded by lumenal hydrolases.

摘要

在酿酒酵母中研究了磷脂酰胆碱(M-C6-NBD-PC)和磷脂酰乙醇胺(M-C6-NBD-PE)荧光类似物的内化和分布。在正常生长温度下,M-C6-NBD-PC主要内化到液泡并被降解。M-C6-NBD-PE内化到核膜/内质网和线粒体,不转运到液泡,也不被降解。在2℃时,两者都通过能量依赖的、对N-乙基马来酰亚胺敏感的过程内化到核膜/内质网和线粒体,并且M-C6-NBD-PC向液泡的转运及其在液泡中的降解被阻断。在胞吞作用缺陷型突变体end4-1中,两种磷脂的内化均未减少。然而,在37℃预孵育后,在囊泡运输缺陷的sec突变体中,两种磷脂在2℃和37℃时的内化均受到抑制。sec18/NSF突变在sec突变中是独特的,它进一步阻断了M-C6-NBD-PC向内质网的转运,提示其对膜融合的依赖性。基于这些以及先前的观察结果,我们提出M-C6-NBD-PC和M-C6-NBD-PE通过蛋白质介导的、能量依赖的机制跨质膜转运到胞质小叶。从胞质小叶开始,两种磷脂自发地分布到核膜/内质网和线粒体。随后,M-C6-NBD-PC,而不是M-C6-NBD-PE,通过囊泡运输被分选到液泡,在那里它被腔内水解酶降解。

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