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首页> 外文期刊>Cell Communication and Signaling >Thrombospondin-1/CD47 signaling modulates transmembrane cation conductance, survival, and deformability of human red blood cells
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Thrombospondin-1/CD47 signaling modulates transmembrane cation conductance, survival, and deformability of human red blood cells

机译:血压素素-1 / CD47信号传导调节人红细胞的跨膜阳离子电导,存活率和可变形性

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Thrombospondin-1 (TSP-1), a Ca2+-binding trimeric glycoprotein secreted by multiple cell types, has been implicated in the pathophysiology of several clinical conditions. Signaling involving TSP-1, through its cognate receptor CD47, orchestrates a wide array of cellular functions including cytoskeletal organization, migration, cell-cell interaction, cell proliferation, autophagy, and apoptosis. In the present study, we investigated the impact of TSP-1/CD47 signaling on Ca2+ dynamics, survival, and deformability of human red blood cells (RBCs). Whole-cell patch-clamp was employed to examine transmembrane cation conductance. RBC intracellular Ca2+ levels and multiple indices of RBC cell death were determined using cytofluorometry analysis. RBC morphology and microvesiculation were examined using imaging flow cytometry. RBC deformability was measured using laser-assisted optical rotational cell analyzer. Exposure of RBCs to recombinant human TSP-1 significantly increased RBC intracellular Ca2+ levels. As judged by electrophysiology experiments, TSP-1 treatment elicited an amiloride-sensitive inward current alluding to a possible Ca2+ influx via non-selective cation channels. Exogenous TSP-1 promoted microparticle shedding as well as enhancing Ca2+- and nitric oxide-mediated RBC cell death. Monoclonal (mouse IgG1) antibody-mediated CD47 ligation using 1F7 recapitulated the cell death-inducing effects of TSP-1. Furthermore, TSP-1 treatment altered RBC cell shape and stiffness (maximum elongation index). Taken together, our data unravel a new role for TSP-1/CD47 signaling in mediating Ca2+ influx into RBCs, a mechanism potentially contributing to their dysfunction in a variety of systemic diseases.
机译:血压出素-1(TSP-1),由多种细胞类型分泌的Ca2 + - 桥接三聚体糖蛋白,已经涉及几种临床病症的病理生理学。通过其同源受体CD47涉及TSP-1的信号传导,串联各种细胞功能,包括细胞骨骼组织,迁移,细胞间相互作用,细胞增殖,自噬和凋亡。在本研究中,我们研究了TSP-1 / CD47信令对人红细胞(RBCS)的CA2 +动力学,存活率和可变形性的影响。使用全细胞贴片夹夹来检查跨膜阳离子电导。使用细胞杂氟量分析测定RBC细胞内Ca2 +水平和多种RBC细胞死亡指标。使用成像流式细胞术检查RBC形态和微孔。使用激光辅助光学旋转电池分析仪测量RBC可变形性。 RBC暴露于重组人TSP-1的RBC细胞内Ca2 +水平显着增加。如电子生物学实验判断,TSP-1处理引发了通过非选择性阳离子通道暗示到可能的CA2 +流入的amiloride敏感的内部电流。外源TSP-1促进微粒脱落,以及增强Ca2 +和一氧化氮介导的RBC细胞死亡。单克隆(小鼠IgG1)抗体介导的CD47连接使用1F7综合培养了TSP-1的细胞死亡诱导效应。此外,TSP-1处理改变了RBC细胞形状和刚度(最大伸长率指数)。一起使用,我们的数据解开了TSP-1 / CD47信令中的新作用,在调节CA2 +流入RBC时,该机制可能导致它们在各种全身疾病中的功能障碍。

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