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The asymmetric membrane structure of erythrocytes from Crucian carp studied by atomic force microscopy

机译:The asymmetric membrane structure of erythrocytes from Crucian carp studied by atomic force microscopy

摘要

Cell membranes play a key role in cellular activities. Fish erythrocytes, prototype of the nucleated erythrocytes of lower vertebrates, are predominantly oval, biconvex discs with elliptical nucleus and much larger in size than human erythrocytes. In attempts to disclose the correlation of membrane structure between fish and human erythrocytes, we used in situ atomic force microscope (AFM) combined with single-molecule force spectroscopy to study the membrane structure of Crucian carp erythrocytes under quasi-native conditions. Our results revealed the asymmetric distribution of proteins in Crucian carp erythrocyte membrane: the outer leaflet of membrane is rather smooth without any proteins, whereas the inner leaflet of membrane is very rough with dense proteins. The asymmetry of fish erythrocyte membrane structure fits well with the semi-mosaic model of human erythrocyte membrane structure. This similarity of membrane structure between human and fish erythrocytes extends the semi-mosaic model of erythrocytes membrane structure to a wider range of species.
机译:细胞膜在细胞活动中起关键作用。鱼类红细胞是低等脊椎动物的有核红细胞的原型,主要是椭圆形的双凸圆盘,具有椭圆形的核,其大小比人的红细胞大得多。为了揭示鱼类和人类红细胞之间膜结构的相关性,我们使用原位原子力显微镜(AFM)结合单分子力谱技术研究了carp鱼在准自然条件下的膜结构。我们的研究结果揭示了Cru鱼红细胞膜中蛋白质的不对称分布:膜的外部小叶很光滑,没有任何蛋白质,而膜的内部小叶很粗糙,有致密的蛋白质。鱼的红细胞膜结构的不对称性与人红细胞膜结构的半马赛克模型非常吻合。人和鱼红细胞之间膜结构的这种相似性将红细胞膜结构的半马赛克模型扩展到更广泛的物种。

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