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2
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Biochemistry. 2005 Jan 18;44(2):643-55. doi: 10.1021/bi0485326.
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Natural phosphatidylcholine is actively translocated across the plasma membrane to the surface of mammalian cells.
J Biol Chem. 2004 Aug 6;279(32):33228-36. doi: 10.1074/jbc.M401751200. Epub 2004 Jun 2.
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The ABC transporter structure and mechanism: perspectives on recent research.ABC转运蛋白的结构与机制:近期研究展望
Cell Mol Life Sci. 2004 Mar;61(6):682-99. doi: 10.1007/s00018-003-3336-9.
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Transbilayer movement of phospholipids in biogenic membranes.生物膜中磷脂的跨膜运动。
Biochemistry. 2004 Mar 16;43(10):2673-81. doi: 10.1021/bi036200f.
5
Tracking down lipid flippases and their biological functions.探寻脂质翻转酶及其生物学功能。
J Cell Sci. 2004 Feb 29;117(Pt 6):805-13. doi: 10.1242/jcs.01055.
6
Transbilayer movement of monohexosylsphingolipids in endoplasmic reticulum and Golgi membranes.单己糖神经鞘脂在内质网和高尔基体膜中的跨膜运动。
Biochemistry. 2002 Oct 29;41(43):13106-15. doi: 10.1021/bi020385t.
7
Altered sphingolipid metabolism in multidrug-resistant ovarian cancer cells is due to uncoupling of glycolipid biosynthesis in the Golgi apparatus.多药耐药卵巢癌细胞中鞘脂代谢的改变是由于高尔基体中糖脂生物合成的解偶联所致。
FASEB J. 2002 Jul;16(9):1111-3. doi: 10.1096/fj.01-0863fje. Epub 2002 May 8.
8
Transbilayer movement of dipalmitoylphosphatidylcholine in proteoliposomes reconstituted from detergent extracts of endoplasmic reticulum. Kinetics of transbilayer transport mediated by a single flippase and identification of protein fractions enriched in flippase activity.二棕榈酰磷脂酰胆碱在内质网去污剂提取物重构的蛋白脂质体中的跨双层运动。由单一翻转酶介导的跨双层转运动力学以及富含翻转酶活性的蛋白组分的鉴定。
J Biol Chem. 2002 Jul 12;277(28):25337-43. doi: 10.1074/jbc.M203809200. Epub 2002 May 8.
9
Proximity of bound Hoechst 33342 to the ATPase catalytic sites places the drug binding site of P-glycoprotein within the cytoplasmic membrane leaflet.结合的Hoechst 33342与ATP酶催化位点的接近程度表明P-糖蛋白的药物结合位点位于细胞质膜小叶内。
Biochemistry. 2002 Apr 9;41(14):4744-52. doi: 10.1021/bi0120897.
10
Multidrug resistance in cancer: role of ATP-dependent transporters.癌症中的多药耐药性:ATP 依赖性转运蛋白的作用
Nat Rev Cancer. 2002 Jan;2(1):48-58. doi: 10.1038/nrc706.

重组的P-糖蛋白多药转运体是葡糖神经酰胺和其他简单糖鞘脂的翻转酶。

The reconstituted P-glycoprotein multidrug transporter is a flippase for glucosylceramide and other simple glycosphingolipids.

作者信息

Eckford Paul D W, Sharom Frances J

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON N1G 2W1, Canada.

出版信息

Biochem J. 2005 Jul 15;389(Pt 2):517-26. doi: 10.1042/BJ20050047.

DOI:10.1042/BJ20050047
PMID:15799713
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1175130/
Abstract

The Pgp (P-glycoprotein) multidrug transporter, which is linked to multidrug resistance in human cancers, functions as an efflux pump for non-polar drugs, powered by the hydrolysis of ATP at its nucleotide binding domains. The drug binding sites of Pgp appear to be located within the cytoplasmic leaflet of the membrane bilayer, suggesting that Pgp may function as a 'flippase' for hydrophobic compounds. Pgp has been shown to translocate fluorescent phospholipids, and it has been suggested that it may also interact with GlcCer (glucosylceramide). Here we use a dithionite fluorescence quenching technique to show that reconstituted Pgp can flip several NBD (nitrobenzo-2-oxa-1,3-diazole)-labelled simple glycosphingolipids, including NBD-GlcCer, from one leaflet of the bilayer to the other in an ATP-dependent, vanadate-sensitive fashion. The rate of NBD-GlcCer flipping was similar to that observed for NBD-labelled PC (phosphatidylcholine). NBD-GlcCer flipping was inhibited in a concentration-dependent, saturable fashion by various Pgp substrates and modulators, and inhibition correlated well with the Kd for binding to the protein. The addition of a second sugar to the headgroup of the glycolipid to form NBD-lactosylceramide drastically reduced the rate of flipping compared with NBD-PC, probably because of the increased size and polarity contributed by the additional sugar residue. We conclude that Pgp functions as a broad-specificity outwardly-directed flippase for simple glycosphingolipids and membrane phospholipids.

摘要

P糖蛋白(P-糖蛋白)多药转运体与人类癌症中的多药耐药性相关,作为非极性药物的外排泵,通过其核苷酸结合结构域处ATP的水解提供动力。P糖蛋白的药物结合位点似乎位于膜双层的细胞质小叶内,这表明P糖蛋白可能作为疏水性化合物的“翻转酶”发挥作用。已证明P糖蛋白可转运荧光磷脂,并且有人提出它也可能与葡糖神经酰胺(GlcCer)相互作用。在这里,我们使用连二亚硫酸盐荧光猝灭技术表明,重组的P糖蛋白可以以ATP依赖、钒酸盐敏感的方式将几种NBD(硝基苯-2-恶唑-1,3-二唑)标记的简单糖鞘脂,包括NBD-GlcCer,从双层的一个小叶翻转到另一个小叶。NBD-GlcCer的翻转速率与NBD标记的磷脂酰胆碱(PC)的翻转速率相似。NBD-GlcCer的翻转受到各种P糖蛋白底物和调节剂的浓度依赖性、饱和性抑制,并且抑制作用与与蛋白质结合的解离常数(Kd)密切相关。与NBD-PC相比,在糖脂的头部基团添加第二个糖以形成NBD-乳糖基神经酰胺,大大降低了翻转速率,这可能是由于额外的糖残基增加了分子大小和极性。我们得出结论,P糖蛋白作为一种具有广泛特异性的外向型翻转酶,作用于简单糖鞘脂和膜磷脂。