Granger B L, Repasky E A, Lazarides E
J Cell Biol. 1982 Feb;92(2):299-312. doi: 10.1083/jcb.92.2.299.
Synemin, a high-molecular-weight protein associated with intermediate filaments in muscle, and vimentin, an intermediate-filament subunit found in many different cell types, have been identified by immunologic and electrophoretic criteria as components of intermediate filaments in mature avian erythrocytes. Desmin, the predominant subunit of intermediate filaments in muscle, has not been detected in these cells. Two dimensional immunoautoradiography of proteolytic fragments of synemin and vimentin demonstates that the erythrocyte proteins are highly homologous, if not identical, to their muscle counterparts. Double immunoflurorescence reaveals that erythrocyte synemin and vimentin co-localize in a cytoplasmic network of sinuous filaments that extends from the nucleus to the plasma membrane and resists aggregation by colcemid. Erythrocytes that are attached to glass cover slips can be sonicated to remove nuclei and nonadherent regions of the plasma membrane; this leaves elliptical patches of adherent membrane that retain mats of vimentin- and synemin-containing intermediate filaments, as seen by immunofluorescence and rotary shadowing. Similarly, mechanical enucleation of erythrocyte ghosts in suspension allows isolation of plasma membranes that retain a significant fraction of the synemin and vimentin, as assayed by electrophoresis, and intermediate filaments, as seen in thin sections. Both synemin and vimentin remain insoluble along with spectrin and actin, in solutions containing nonionic detergent and high salt. However, brief exposure of isolated membrane to distilled water releases the synemin and vimentin together in nearly pure form, before the release of significant amounts of spectrin and actin. These data suggest that avian erythrocyte intermeditate filaments are somehow anchored to the plasma membrane; erythrocytes may thus provide a simple system for the study of intermediate filaments and their mode of interaction with membranes. In addition, these data, in conjunction with previous data from muscle, indicate that synemin is capable of associating with either desmin or vimentin and may thus perform a special role in the structure or function of intermediate filaments in erythrocytes as well as muscle.
伴肌动蛋白是一种与肌肉中间丝相关的高分子量蛋白质,波形蛋白是一种存在于许多不同细胞类型中的中间丝亚基,通过免疫学和电泳标准已被鉴定为成熟禽类红细胞中间丝的组成成分。结蛋白是肌肉中间丝的主要亚基,在这些细胞中未被检测到。伴肌动蛋白和波形蛋白蛋白水解片段的二维免疫放射自显影表明,红细胞中的这些蛋白质与其肌肉中的对应物高度同源,即便不是完全相同。双重免疫荧光显示,红细胞伴肌动蛋白和波形蛋白共定位于从细胞核延伸至质膜的蜿蜒丝状细胞质网络中,并且能抵抗秋水仙酰胺的聚集作用。附着在玻璃盖玻片上的红细胞可以通过超声处理去除细胞核和质膜的非附着区域;这样就留下了附着膜的椭圆形斑块,通过免疫荧光和旋转阴影法可以看到,这些斑块保留了含有波形蛋白和伴肌动蛋白的中间丝束。同样,对悬浮液中的红细胞血影进行机械去核,可以分离出保留了相当一部分伴肌动蛋白和波形蛋白的质膜,通过电泳检测可知,还保留了中间丝,在薄片中也能看到。在含有非离子去污剂和高盐的溶液中,伴肌动蛋白和波形蛋白与血影蛋白和肌动蛋白一样保持不溶性。然而,将分离的膜短暂暴露于蒸馏水中,会在大量血影蛋白和肌动蛋白释放之前,以几乎纯净的形式一起释放伴肌动蛋白和波形蛋白。这些数据表明,禽类红细胞中间丝以某种方式锚定在质膜上;因此,红细胞可能为研究中间丝及其与膜的相互作用方式提供一个简单的系统。此外,这些数据与之前来自肌肉的数据一起表明,伴肌动蛋白能够与结蛋白或波形蛋白结合,因此可能在红细胞以及肌肉的中间丝的结构或功能中发挥特殊作用。