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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Colocalization of Rh polypeptides and the aminophospholipid transporter in dilauroylphosphatidylcholine-induced erythrocyte vesicles
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Colocalization of Rh polypeptides and the aminophospholipid transporter in dilauroylphosphatidylcholine-induced erythrocyte vesicles

机译:Rh多肽和氨基磷脂转运蛋白在二月桂酰磷脂酰胆碱诱导的红细胞囊泡中的共定位

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摘要

Cytoskeleton-free vesicles released from human red blood cells (RBC) transport exogenously supplied aminophospholipid analogues from the vesicle's outer to inner leaflet at rates comparable to those of normal RBC (Beleznay et al. (1993) Biochemistry 32, 3146–3152). Because polypeptides associated with the Rh blood group system have been implicated in the transbilayer movement of phosphatidylserine (PS), we investigated the relationship and co-localization of the aminophospholipid translocase and Rh in dilauroylphosphatidylcholine-inducted RBC vesicles. The transbilayer movement of fluorescent (NBD-PS) and photoactivatable (125I-N3-PS) PS in RBC vesicles was ATI'- and temperature-dependent. Inhibition of PS transport by sulfhydryl reagents could be accomplished by direct vesicle treatment or by treating RBC before vesiculation. In the case of diamide- and pyridyldithioethylamine-mediated inhibition, NBD-PS transport could be restored by reduction with dithiothreitol, indicating that the movement of the PS transporter into the emerging vesicle was independent of the oxidative status of membrane sulfhydryls. The presence of Rh polypeptides in the vesicles was verified by direct immunoprecipitation of isotopically-labeled Rh and semi-quantified by antibody adsorption assays. Similar to the movement of the PS transporter, localization of Rh polypeptides in the vesicle membrane was independent of the red cell's oxidative status. These results show that the PS translocase and Rh-related proteins colocalize in RBC vesicles suggesting that these proteins may be members of a multicomponent complex that plays a role in lipid movement and the generation of membrane lipid asymmetry.
机译:从人红细胞(RBC)释放的无细胞骨架的囊泡,以与正常RBC相当的速率,从囊泡的外部小叶向内部小叶运输外源供应的氨基磷脂类似物(Beleznay等人(1993)Biochemistry 32,3146–3152)。因为与Rh血型系统相关的多肽已经参与了磷脂酰丝氨酸(PS)的跨双层运动,所以我们研究了二月桂酰磷脂酰胆碱诱导的RBC囊泡中氨基磷脂转位酶与Rh的关系和共定位。荧光(NBD-PS)和可光活化(125I-N3-PS)PS在RBC囊泡中的跨双层运动是ATI'和温度依赖性的。巯基试剂对PS转运的抑制作用可通过直接囊泡处理或在囊泡之前处理RBC来实现。在二酰胺和吡啶基二硫代乙胺介导的抑制作用下,可以通过用二硫苏糖醇还原来恢复NBD-PS转运,这表明PS转运蛋白向新兴囊泡中的移动与膜巯基的氧化状态无关。通过直接免疫沉淀同位素标记的Rh验证囊泡中Rh多肽的存在,并通过抗体吸附测定法对其进行半定量。类似于PS转运蛋白的运动,Rh多肽在囊膜中的定位与红细胞的氧化状态无关。这些结果表明,PS转位酶和Rh相关蛋白在RBC囊泡中共定位,表明这些蛋白可能是在脂质运动和膜脂质不对称性产生中起作用的多组分复合物的成员。

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