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Effects of phosphatidylinositol diphosphate on phospholipid asymmetry in the human erythrocyte membrane

机译:二磷酸磷脂酰肌醇对人红细胞膜磷脂不对称性的影响

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While phospholipid asymmetry has been well characterized in red blood cells (RBCs), controversy exists as to what role PIP2 plays in cation-induced phosphatidylserine (PS) exposure. We report that PIP2 can redistribute intracellular cations and thereby lead to a loss of phospholipid asymmetry. Flow cytometry was employed to monitor intracellular cation levels by using the fluorophore Fluo-3 and exposure of PS on the outer surface of the RBC bilayer by using fluorescently labeled annexin V. The addition of PIP2 to RBCs led to a concentration-dependent increase in cytosolic cations and PS exposure. If RBCs were preincubated with 25 mu M neomycin sulfate, an inhibitor of phosphoinositide metabolism, PIP2-induced PS exposure decreased dramatically. If the RBC buffer system contained 2.5 mM EGTA, PS exposure also decreased significantly, suggesting a competition between intracellular Fluo-3 and extracellular EGTA. Together, these data indicate that (1) PS exposure was found in RBCs that exhibited an increased cytosolic cation concentration available for the fluorophore, Fluo-3, (2) both the level of intracellular cations and the movement of PS from the inner to the outer monolayer were affected by the level of PIP2 in the bilayer, (3) the cleavage of PIP2 by a phosphoinositide-specific phospholipase lead to the redistribution of intracellular cations and to an increase in the amount of PS exposed on the outer leaflet of the bilayer, and (4) a transient channel could be formed during the interaction of PIP2 with the RBC membrane which would then allow the transbilayer movement of phospholipids and cations. [References: 28]
机译:尽管磷脂的不对称性已在红细胞(RBC)中得到了很好的表征,但关于PIP2在阳离子诱导的磷脂酰丝氨酸(PS)暴露中起什么作用仍存在争议。我们报道PIP2可以重新分配细胞内阳离子,从而导致磷脂不对称性的损失。流式细胞仪通过使用荧光团Fluo-3监测细胞内阳离子水平,并通过使用荧光标记的膜联蛋白V监测RBC双层外表面上PS的暴露。PIP2添加到RBC中导致细胞质浓度依赖性增加阳离子和PS暴露。如果将RBC与25μM硫酸新霉素(磷酸肌醇代谢的抑制剂)预先孵育,则PIP2诱导的PS暴露会急剧下降。如果RBC缓冲液系统包含2.5 mM EGTA,则PS暴露也会显着降低,这表明细胞内Fluo-3与细胞外EGTA之间存在竞争。在一起,这些数据表明(1)在RBC中发现PS暴露,该RBC显示出可用于荧光团Fluo-3的增加的胞质阳离子浓度,(2)细胞内阳离子的水平以及PS从内部向内部的移动。外单层受到双层中PIP2的水平的影响,(3)磷酸肌醇特异性磷脂酶对PIP2的切割导致细胞内阳离子的重新分布,并使双层外小叶上暴露的PS数量增加(4)在PIP2与RBC膜相互作用的过程中可能会形成一个瞬态通道,该通道随后将使磷脂和阳离子跨双层运动。 [参考:28]

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