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内质网膜翻转酶介导的甘露糖磷酸多萜醇的立体选择性跨膜易位。

Stereoselective transbilayer translocation of mannosyl phosphoryl dolichol by an endoplasmic reticulum flippase.

机构信息

Department of Biochemistry, Weill Cornell Medical College, 1300 York Avenue, New York, NY 10065, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Jun 22;107(25):11289-94. doi: 10.1073/pnas.1002408107. Epub 2010 Jun 7.

Abstract

Mannose-phosphate-dolichol (MPD) is a multifunctional glycolipid that is synthesized on the cytoplasmic face of the endoplasmic reticulum (ER) and used on the opposite side of the membrane in the ER lumen as a mannose donor for protein N-glycosylation, glycosylphosphatidylinositol-anchoring, and C- and O-mannosylation. For this, it must be translocated, i.e., flipped, across the ER membrane. The molecular identity of the MPD translocator (MPD flippase) is not known. Here we show that MPD-flippase activity can be reconstituted in large unilamellar proteoliposomes prepared from phosphatidylcholine and Triton X-100-solubilized rat liver ER-membrane proteins. Using carboxy-2,2,6,6-tetramethylpiperidine 1-oxyl NO(+) as a topological probe to selectively oxidize MPD molecules in the outer leaflet of the reconstituted vesicles, we demonstrate rapid, protein-dependent, ATP-independent transbilayer translocation of MPD from the inner to the outer leaflet. MPD flipping is highly specific. A stereoisomer of MPD was weakly translocated (> 10-fold lower rate) compared with natural MPD. Competition experiments with water-soluble isoprenyl monophosphates showed that MPD flippase recognizes the dolichol chain of MPD, preferring a saturated alpha-isoprene to unsaturated trans- or cis- alpha-isoprene units. Chromatography of the detergent-solubilized ER protein mixture prior to reconstitution indicated that MPD flippase (i) is not a Con A-binding glycoprotein and (ii) can be resolved from the oligosaccharide-diphosphate dolichol flippase that translocates Man(5)GlcNAc(2)-PP-dolichol, a lipid intermediate of N-glycosylation. These data provide a mechanistic framework for understanding MPD flipping, as well as a biochemical basis for identifying MPD flippase.

摘要

甘露糖-磷酸-多萜醇(MPD)是一种多功能糖脂,它在内质网(ER)的细胞质面合成,并在 ER 腔的膜的另一侧作为蛋白质 N-糖基化、糖基磷脂酰肌醇锚定以及 C 和 O-甘露糖化的甘露糖供体使用。为此,它必须被转运,即翻转,穿过 ER 膜。MPD 转运蛋白(MPD 翻转酶)的分子身份尚不清楚。在这里,我们表明 MPD 翻转酶活性可以在从磷脂酰胆碱和 Triton X-100 溶解的大鼠肝 ER 膜蛋白制备的大单层囊泡中重建。使用羧基-2,2,6,6-四甲基哌啶 1-氧自由基(NO(+))作为拓扑探针,选择性氧化重建囊泡的外层中的 MPD 分子,我们证明了 MPD 从内侧快速、蛋白依赖性、ATP 非依赖性跨膜转运到外侧。MPD 翻转具有高度特异性。与天然 MPD 相比,MPD 的立体异构体的转运速率较弱(低 10 倍以上)。与水溶性异戊烯单磷酸的竞争实验表明,MPD 翻转酶识别 MPD 的多萜醇链,优先识别饱和的α-异戊烯而不是不饱和的反式或顺式α-异戊烯单位。在重建之前用去污剂溶解 ER 蛋白混合物进行层析表明,MPD 翻转酶(i)不是 Con A 结合糖蛋白,(ii)可以与转运 Man(5)GlcNAc(2)-PP-多萜醇的寡糖二磷酸多萜醇翻转酶分开,Man(5)GlcNAc(2)-PP-多萜醇是 N-糖基化的脂质中间产物。这些数据为理解 MPD 翻转提供了一个机制框架,并为鉴定 MPD 翻转酶提供了生化基础。

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本文引用的文献

1
Flipping lipids: why an' what's the reason for?翻转脂质:为什么以及原因是什么?
ACS Chem Biol. 2009 Nov 20;4(11):895-909. doi: 10.1021/cb900163d.
2
5
Dolichol-phosphate mannose synthase: structure, function and regulation.多萜醇磷酸甘露糖合成酶:结构、功能与调控
Biochim Biophys Acta. 2008 Jun;1780(6):861-8. doi: 10.1016/j.bbagen.2008.03.005. Epub 2008 Mar 14.

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