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红细胞血影变形和取向特征的流动电子顺磁共振研究:细胞骨架网络状态改变的可能影响。

A flow EPR study of deformation and orientation characteristics of erythrocyte ghosts: a possible effect of an altered state of cytoskeletal network.

作者信息

Ito T, Kon H

机构信息

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.

出版信息

J Membr Biol. 1988;101(1):57-65. doi: 10.1007/BF01872820.

Abstract

Using the flow EPR technique, we investigated the resealed ghost deformability in shear flow and the effects of the altered state of cytoskeletal network induced by hypotonic incubation of ghosts. Isotonically resealed ghosts in the presence of Mg-ATP, in which alteration of cytoskeletal network is not effected, have smooth biconcave discoid shapes, and show a flow orientation and deformation behavior similar to that of erythrocytes, except that higher viscosities are required to induce the same degrees of deformation and orientation as in erythrocytes. The flow behavior of resealed ghosts is Mg-ATP dependent, and the shape of the ghosts resealed without Mg-ATP is echinocytic. In contrast, the ghosts resealed by hypotonic incubation show a markedly reduced deformability even with Mg-ATP present. Nonreducing, nondenaturing polyacrylamide gel electrophoresis (PAGE) of the low ionic strength extracts from hypotonically resealed ghosts reveals a shift of the spectrin tetramer-dimer equilibrium toward the dimers. In the maleimide spin-labeled ghosts, the ratios of the weakly immobilized to the strongly immobilized EPR intensities are larger in hypotonically resealed ghosts than in the isotonically resealed ghosts, indicating an enhanced mobility in the spectrin structure in the former. Photomicrographs of hypotonically resealed ghosts show slightly stomatocytic transformations. These data suggest that the shape and the deformability loss in hypotonically resealed ghosts are related to an alteration of the spectrin tetramer-dimer equilibrium in the membrane. Thus, the shift of the equilibrium is likely to affect the regulation of the membrane deformability both in normal and pathological cells such as hereditary elliptocytes.

摘要

利用流动电子顺磁共振(EPR)技术,我们研究了重封血影在剪切流中的变形能力以及低渗孵育血影诱导的细胞骨架网络状态改变的影响。在Mg-ATP存在下等渗重封的血影,其细胞骨架网络未受影响,呈光滑的双凹盘状,并且除了诱导与红细胞相同程度的变形和取向需要更高的粘度外,还表现出与红细胞相似的流动取向和变形行为。重封血影的流动行为依赖于Mg-ATP,而无Mg-ATP重封的血影呈棘状细胞形态。相比之下,即使存在Mg-ATP,低渗孵育重封的血影的变形能力也明显降低。对低渗重封血影的低离子强度提取物进行非还原、非变性聚丙烯酰胺凝胶电泳(PAGE),结果显示血影蛋白四聚体-二聚体平衡向二聚体方向移动。在马来酰亚胺自旋标记的血影中,低渗重封血影中弱固定与强固定EPR强度的比值大于等渗重封血影,这表明前者血影蛋白结构中的流动性增强。低渗重封血影的显微照片显示有轻微的口形细胞转变。这些数据表明,低渗重封血影的形状和变形能力丧失与膜中血影蛋白四聚体-二聚体平衡的改变有关。因此,这种平衡的移动可能会影响正常细胞和遗传性椭圆形红细胞等病理细胞中膜变形能力的调节。

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