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首页> 外文期刊>Biochemistry >Protein-mediated inward translocation of phospholipids occurs in both the apical and basolateral plasma membrane domains of epithelial cells.
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Protein-mediated inward translocation of phospholipids occurs in both the apical and basolateral plasma membrane domains of epithelial cells.

机译:蛋白质介导的磷脂向内易位发生在上皮细胞的顶端和基底外侧质膜域中。

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The translocation of spin-labeled analogues of phosphatidylcholine (4-doxylpentanoyl-PC, SL-PC), phosphatidylethanolamine (SL-PE), phosphatidylserine (SL-PS), and sphingomyelin (SL-SM) from the outer to the inner leaflet of the plasma membrane bilayer was investigated in dog kidney MDCK II and human colon Caco-2 cells. Disappearance from the outer leaflet was assayed using back-exchange to serum albumin. Experiments with cells in suspension as well as with polarized cells on filters were performed at reduced temperatures (10 and 20 degreesC) to suppress endocytosis and hydrolysis of spin-labeled lipids. For both epithelial cell lines, a fast ATP-dependent inward movement of the aminophospholipids SL-PS and SL-PE was found, while SL-SM was only slowly internalized without any effect of ATP depletion. The kinetics of redistribution of SL-PC were clearly different between the two cell lines. In MDCK II cells, SL-PC was rapidly internalized in an ATP-dependent and N-ethylmaleimide-sensitive manner and at a rate similar to that of the aminophospholipids. In contrast, in Caco-2 cells the inward movement of SL-PC was much slower than that of the aminophospholipids, did not depend on ATP, and was not N-ethylmaleimide-sensitive. Inhibitor studies indicated that the outward-translocating multidrug resistance P-glycoprotein present in these cells did not affect the kinetics of inward translocation. Internalization was always similar on the apical and basolateral cell surface, suggesting the presence of the same phospholipid translocator(s) on both surface domains of epithelial cells. We propose that Caco-2 cells contain the well-known aminophospholipid translocase, while MDCK II cells contain either two translocases, namely, the aminophospholipid translocase and a phosphatidylcholine-specific translocase, or one translocase of a new type, translocating aminophospholipids as well as phosphatidylcholine.
机译:自旋标记的磷脂酰胆碱(4-doxylpentanoyl-PC,SL-PC),磷脂酰乙醇胺(SL-PE),磷脂酰丝氨酸(SL-PS)和鞘磷脂(SL-SM)的类似物从小叶的外向内易位在狗肾脏MDCK II和人结肠Caco-2细胞中研究了质膜双层。使用向血清白蛋白的反向交换分析从外部小叶上消失的情况。在降低的温度(10和20摄氏度)下进行了悬浮细胞和滤膜上极化细胞的实验,以抑制内吞作用和自旋标记脂质的水解。对于两种上皮细胞系,都发现了氨基磷脂SL-PS和SL-PE的快速ATP依赖性向内运动,而SL-SM仅缓慢内在化,而没有ATP消耗的任何影响。 SL-PC的重新分布动力学在两种细胞系之间明显不同。在MDCK II细胞中,SL-PC以ATP依赖性和N-乙基马来酰亚胺敏感的方式快速内化,其速率与氨基磷脂相似。相反,在Caco-2细胞中,SL-PC的向内运动比氨基磷脂的向内运动慢得多,不依赖于ATP,并且对N-乙基马来酰亚胺不敏感。抑制剂研究表明,这些细胞中存在的向外易位的多药耐药性P-糖蛋白不会影响向内易位的动力学。内在化在顶端和基底外侧细胞表面上总是相似的,这表明在上皮细胞的两个表面域上都存在相同的磷脂易位。我们建议Caco-2细胞包含众所周知的氨基磷脂转位酶,而MDCK II细胞包含两个转位酶,即氨基磷脂转位酶和磷脂酰胆碱特异性转位酶,或一种新型的转位酶,转位氨基磷脂和磷脂酰胆碱。

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