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氨基磷脂在人红细胞中的掺入与转运。

Incorporation and translocation of aminophospholipids in human erythrocytes.

作者信息

Daleke D L, Huestis W H

出版信息

Biochemistry. 1985 Sep 24;24(20):5406-16. doi: 10.1021/bi00341a019.

Abstract

Cell morphology changes are used to examine the interaction of exogenous phosphatidylserine and phosphatidylethanolamine with human erythrocytes. Short-chain saturated lipids transfer from liposomes to cells, inducing shape changes that are indicative of their incorporation into, and in some cases translocation across, the cell membrane bilayer. Dioleoylphosphatidylserine and low concentrations of dilauroyl- and dimyristoylphosphatidylserine induce stomatocytosis. At higher concentrations, dilauroylphosphatidylserine and dimyristoylphosphatidylserine induce a biphasic shape change: the cells crenate initially but rapidly revert to a discocytic and eventually stomatocytic shape. The extent of these shape changes is dose dependent and increases with increasing hydrophilicity of the phospholipid. Cells treated with dilauroylphosphatidylethanolamine and bovine brain lysophosphatidylserine exhibit a similar biphasic shape change but revert to discocytes rather than stomatocytes. These shape changes are not a result of vesicle--cell fusion nor can they be accounted for by cholesterol depletion. The reversion from crenated to stomatocytic forms is dependent on intracellular ATP and Mg2+ concentrations and the state of protein sulfhydryl groups. The present results are consistent with the existence of a Mg2+- and ATP-dependent protein in erythrocytes that selectively translocates aminophospholipids to the membrane inner monolayer engendering aminophospholipid asymmetry.

摘要

细胞形态变化被用于检测外源性磷脂酰丝氨酸和磷脂酰乙醇胺与人红细胞的相互作用。短链饱和脂质从脂质体转移到细胞,诱导形状变化,这表明它们被整合到细胞膜双层中,在某些情况下还会跨膜转运。二油酰磷脂酰丝氨酸以及低浓度的二月桂酰和二肉豆蔻酰磷脂酰丝氨酸会诱导口形红细胞症。在较高浓度下,二月桂酰磷脂酰丝氨酸和二肉豆蔻酰磷脂酰丝氨酸会诱导双相形状变化:细胞最初会皱缩,但会迅速恢复为盘状细胞,最终变为口形红细胞。这些形状变化的程度呈剂量依赖性,并随着磷脂亲水性的增加而增加。用二月桂酰磷脂酰乙醇胺和牛脑溶血磷脂酰丝氨酸处理的细胞表现出类似的双相形状变化,但会恢复为盘状细胞而非口形红细胞。这些形状变化不是囊泡 - 细胞融合的结果,也不能用胆固醇耗竭来解释。从皱缩形式恢复到口形红细胞形式取决于细胞内ATP和Mg2+浓度以及蛋白质巯基的状态。目前的结果与红细胞中存在一种依赖Mg2+和ATP的蛋白质一致,该蛋白质选择性地将氨基磷脂转运到膜内单层,从而产生氨基磷脂不对称性。

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