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细胞外配体对红细胞膜刚性的扰动。

Perturbation of red blood cell membrane rigidity by extracellular ligands.

作者信息

Paulitschke M, Nash G B, Anstee D J, Tanner M J, Gratzer W B

机构信息

Department of Haematology, Medical School, University of Birmingham, UK.

出版信息

Blood. 1995 Jul 1;86(1):342-8.

PMID:7795243
Abstract

It is known that binding of extracellular antibodies against the major sialoglycoprotein, glycophorin A, reduced the deformability of the red blood cell membrane. This has been taken to result from new or altered interactions between the glycophorin A and the membrane skeleton. We have shown by means of the micropipette aspiration technique that antibodies against the preponderant transmembrane protein, band 3, induce similar effects. A definite but much smaller reduction in elasticity of the membrane is engendered by univalent Fab fragments of the anti-band 3 antibodies. By examining cells genetically devoid of glycophorin A or containing a variant of this constituent, truncated at the inner membrane surface, we have shown that the anti-band 3 antibodies do not act through the band 3-associated glycophorin A. We examined the effect of anti-glycophorin A antibodies on homozygous Wr(a+b-) cells, in which an amino acid replacement in band 3 annihilates the Wright b (Wrb) epitope (comprising sequence elements of glycophorin A and band 3) and thus, by implication disrupts or perturbs the band 3-glycophorin A interaction; these cells show a much smaller response to an anti-glycophorin A antibody than do normal controls. We infer that in this case anti-glycophorin A antibodies exert their rigidifying effect through the associated band 3. Another anti-glycophorin A antibody, directed against an epitope remote from the membrane surface, however, increases the rigidity of both Wr(a+b-) and normal cells. This implies that not all antibodies act in the same manner in modifying the membrane mechanical properties. The effect exerted by anti-band 3 antibodies appears not to be transmitted through the band 3-ankyrin-spectrin pathway because the rigidifying effect of the intact antibody persists at alkaline pH, at which there is evidence that the ankyrin-band 3 link is largely dissociated. The large difference between the effects of saturating concentrations of the divalent and univalent anti-band 3 antibodies implies the existence of an overriding effect on rigidity, resulting from the bifunctionality of the intact antigen. Freeze-fracture electron microscopy shows that the anti-band 3 promotes the formation of small clusters of intra-membrane proteins. Extracellular ligands may in general act by promoting strong or transient interactions between integral membrane proteins, thereby impeding local distortion of the membrane skeletal network in response to shear.

摘要

已知针对主要唾液糖蛋白血型糖蛋白A的细胞外抗体结合会降低红细胞膜的可变形性。这被认为是由于血型糖蛋白A与膜骨架之间新的或改变的相互作用所致。我们通过微量吸管抽吸技术表明,针对主要跨膜蛋白带3的抗体也会产生类似的效果。抗带3抗体的单价Fab片段会导致膜弹性有一定但小得多的降低。通过检查基因上缺乏血型糖蛋白A或含有该成分变体(在内膜表面被截断)的细胞,我们表明抗带3抗体并非通过与带3相关的血型糖蛋白A起作用。我们研究了抗血型糖蛋白A抗体对纯合Wr(a+b-)细胞的影响,在这种细胞中,带3中的一个氨基酸替换消除了赖特b(Wrb)表位(由血型糖蛋白A和带3的序列元件组成),因此,这意味着破坏或扰乱了带3-血型糖蛋白A的相互作用;这些细胞对抗血型糖蛋白A抗体的反应比正常对照小得多。我们推断在这种情况下,抗血型糖蛋白A抗体通过相关的带3发挥其硬化作用。然而,另一种针对远离膜表面表位的抗血型糖蛋白A抗体,会增加Wr(a+b-)细胞和正常细胞的刚性。这意味着并非所有抗体在改变膜机械性能方面都以相同的方式起作用。抗带3抗体产生的作用似乎不是通过带3-锚蛋白-血影蛋白途径传递的,因为完整抗体的硬化作用在碱性pH下仍然存在,在这种pH下有证据表明锚蛋白-带3连接在很大程度上解离了。饱和浓度的二价和单价抗带3抗体的作用之间的巨大差异意味着完整抗原的双功能性会对刚性产生首要影响。冷冻断裂电子显微镜显示,抗带3促进膜内蛋白形成小簇。一般来说,细胞外配体可能通过促进整合膜蛋白之间的强相互作用或瞬时相互作用来发挥作用,从而阻碍膜骨架网络因剪切力而发生局部变形。

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