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人红细胞膜上带3-锚蛋白桥的断裂和重新连接速率。

Rate of rupture and reattachment of the band 3-ankyrin bridge on the human erythrocyte membrane.

作者信息

Anong William A, Weis Tahlia L, Low Philip S

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907.

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Biol Chem. 2006 Aug 4;281(31):22360-22366. doi: 10.1074/jbc.M513839200. Epub 2006 Jun 8.

Abstract

The principal bridge connecting the erythrocyte membrane to the spectrin-based skeleton is established by band 3 and ankyrin; mutations leading to reduced bridge formation or increased bridge rupture result in morphological and mechanical abnormalities. Because membrane mechanical properties are determined in part by the protein interactions that stabilize the membrane, we have evaluated the rates of rupture and reattachment of band 3-ankyrin bridges under both resting and mechanically stressed conditions. To accomplish this, we have examined the rate of ankyrin displacement from inside-out vesicles by the hexahistidine-tagged cytoplasmic domain of band 3, cdb3-(His)6 and the rate of substitution of cdb3-(His)6 into endogenous band 3-ankyrin bridges in resealed erythrocytes in the presence and absence of shear stress. We demonstrate that 1) exogenous cdb3-(His)6 displaces endogenous ankyrin from IOVs with a half-time and first order rate constant of 42 +/- 14 min and 0.017 +/- 0.0058 min(-1), respectively; 2) exogenous cdb3-(His)6 substitutes endogenous band 3 in its linkage to ankyrin in resealed cells with a half-time and first order rate constant of 12 +/- 3.6 min and 0.060 +/- 0.019 min(-1), respectively; 3) cdb3-(His)6-mediated rupture of the band 3-ankyrin bridge in resealed cells results in decreased membrane mechanical stability, decreased deformability, abnormal morphology, and spontaneous vesiculation of the cells; and 4) the above on/off rates are not significantly accelerated by mechanical shear stress. We conclude that the off rates of the band 3-ankyrin interaction are sufficiently slow to allow sustained erythrocyte deformation without loss of elasticity.

摘要

连接红细胞膜与血影蛋白骨架的主要桥梁是由带3蛋白和锚蛋白建立的;导致桥梁形成减少或桥梁破裂增加的突变会导致形态和机械异常。由于膜的机械性能部分由稳定膜的蛋白质相互作用决定,我们评估了在静息和机械应激条件下带3蛋白-锚蛋白桥梁的破裂和重新附着速率。为了实现这一点,我们通过带3蛋白的六组氨酸标记细胞质结构域cdb3-(His)6研究了从内向外囊泡中锚蛋白的位移速率,以及在有和没有剪切应力的情况下,cdb3-(His)6在重新封闭的红细胞中取代内源性带3蛋白-锚蛋白桥梁的速率。我们证明:1)外源性cdb3-(His)6从内向外囊泡中取代内源性锚蛋白的半衰期和一级速率常数分别为42±14分钟和0.017±0.0058分钟-1;2)外源性cdb3-(His)6在重新封闭的细胞中取代与锚蛋白相连的内源性带3蛋白的半衰期和一级速率常数分别为12±3.6分钟和0.060±0.019分钟-1;3)cdb3-(His)6介导的重新封闭细胞中带3蛋白-锚蛋白桥梁的破裂导致膜机械稳定性降低、变形性降低、形态异常和细胞自发形成囊泡;4)上述开/关速率不会因机械剪切应力而显著加快。我们得出结论,带3蛋白-锚蛋白相互作用的解离速率足够慢,能够使红细胞持续变形而不丧失弹性。

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