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The cytoskeletal system of nucleated erythrocytes. I. Composition and function of major elements

机译:有核红细胞的细胞骨架系统。一主要要素的组成和作用

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摘要

We have studied the dogfish erythrocyte cytoskeletal system, which consists of a marginal band of microtubules (MB) and trans-marginal band material (TBM). The TBM appeared in whole mounts as a rough irregular network and in thin sections as a surface-delimiting layer completely enclosing nucleus and MB. In cells incubated at 0 degrees C for 30 min or more, the MB disappeared but the TBM remained. MB reassembly occurred with rewarming, and was inhibited by colchicine. Flattened elliptical erythrocyte morphology was retained even when MBs were absent. Total solubilization of MB and TBM at low pH, or dissolution of whole anucleate cytoskeletons, yielded components comigrating with actin, spectrin, and tubulin standards during gel electrophoresis. Mass-isolated MBs, exhibiting ribbonlike construction apparently maintained by cross-bridges, contained four polypeptides in the tubulin region of the gel. Only these four bands were noticeably increased in the soluble phase obtained from cells with 0 degrees C- disassembled MBs. The best isolated MB preparations contained tubulin but no components comigrating with high molecular weight microtubule- associated proteins, spectrin, or actin. Actin and spectrin therefore appear to be major TBM constituents, with tubulin localized in the MB. The results are interpreted in terms of an actin- and spectrin- containing subsurface cytoskeletal layer (TBM), related to that of mammalian erythrocytes, which maintains cell shape in the absence of MBs. Observations on abnormal pointed erythrocytes containing similarly pointed MBs indicate further that the MB can deform the TBM from within so as to alter cell shape. MBs may function in this manner during normal cellular morphogenesis and during blood flow in vivo.
机译:我们研究了the鱼红细胞的细胞骨架系统,该系统由微管边缘带(MB)和跨边界带材料(TBM)组成。 TBM在整个坐骑中表现为粗糙的不规则网络,而在薄截面中则表现为完全包围核和MB的表面定界层。在0摄氏度下孵育30分钟或更长时间的细胞中,MB消失了,但仍保留了TBM。 MB重组伴随变温而发生,并被秋水仙碱抑制。即使没有MB,扁平的椭圆红细胞形态也可以保留。在低pH下MB和TBM的总溶解度,或整个无核细胞骨架的溶解,在凝胶电泳过程中产生了与肌动蛋白,血影蛋白和微管蛋白标准品相对应的组分。质量分离的MBs表现出明显的带状结构,显然是由交叉桥维持的,在凝胶的微管蛋白区域中包含四个多肽。从具有0℃C-拆卸的MB的细胞获得的可溶相中,仅这四个条带显着增加。最佳分离的MB制剂中含有微管蛋白,但没有与高分子量微管相关蛋白,血影蛋白或肌动蛋白竞争的成分。因此,肌动蛋白和血影蛋白似乎是主要的TBM成分,微管蛋白位于MB中。用含肌动蛋白和血影蛋白的地下细胞骨架层(TBM)进行解释,该结果与哺乳动物的红细胞有关,可在不存在MB的情况下保持细胞形状。对包含相似尖的MB的异常尖的红细胞的观察进一步表明,MB可以使TBM从内部变形从而改变细胞形状。 MBs可以在正常细胞形态发生过程中和体内血流过程中以这种方式起作用。

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