An Xiuli, Salomao Marcela, Guo Xinhua, Gratzer Walter, Mohandas Narla
Red Cell Physiology Laboratory, New York Blood Center, New York, NY 10021, USA.
Blood. 2007 Feb 1;109(3):1284-8. doi: 10.1182/blood-2006-07-036954. Epub 2006 Sep 28.
The ternary complex of spectrin, actin, and 4.1R (human erythrocyte protein 4.1) defines the nodes of the erythrocyte membrane skeletal network and is inseparable from membrane stability under mechanical stress. These junctions also contain tropomyosin (TM) and the other actin-binding proteins, adducin, protein 4.9, tropomodulin, and a small proportion of capZ, the functions of which are poorly defined. Here, we have examined the consequences of selective elimination of TM from the membrane. We have shown that the mechanical stability of the membranes of resealed ghosts devoid of TM is grossly, but reversibly, impaired. That the decreased membrane stability of TM-depleted membranes is the result of destabilization of the ternary complex of the network junctions is demonstrated by the strongly facilitated entry into the junctions in situ of a beta-spectrin peptide, containing the actin- and 4.1R-binding sites, after extraction of the TM. The stabilizing effect of TM is highly specific, in that it is only the endogenous isotype, and not the slightly longer muscle TM that can bind to the depleted membranes and restore their mechanical stability. These findings have enabled us identify a function for TM in elevating the mechanical stability of erythrocyte membranes by stabilizing the spectrin-actin-4.1R junctional complex.
血影蛋白、肌动蛋白和4.1R(人类红细胞蛋白4.1)的三元复合物定义了红细胞膜骨架网络的节点,并且在机械应力下与膜稳定性密不可分。这些连接点还包含原肌球蛋白(TM)以及其他肌动蛋白结合蛋白,如内收蛋白、蛋白4.9、原肌球蛋白调节蛋白和一小部分帽蛋白Z,其功能尚不清楚。在此,我们研究了从膜中选择性去除TM的后果。我们已经表明,不含TM的重封血影膜的机械稳定性受到严重但可逆的损害。TM缺失膜的膜稳定性降低是网络连接点三元复合物不稳定的结果,这一点通过在提取TM后,含有肌动蛋白和4.1R结合位点的β-血影蛋白肽原位进入连接点的强烈促进得以证明。TM的稳定作用具有高度特异性,因为只有内源性同种型,而不是稍长的肌肉TM能够与缺失TM的膜结合并恢复其机械稳定性。这些发现使我们能够确定TM通过稳定血影蛋白-肌动蛋白-4.1R连接复合物来提高红细胞膜机械稳定性的功能。