首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Three-dimensional electron microscopical visualization of the cytoskeleton of animal cells: immunoferritin identification of actin- and tubulin-containing structures.
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Three-dimensional electron microscopical visualization of the cytoskeleton of animal cells: immunoferritin identification of actin- and tubulin-containing structures.

机译:动物细胞的细胞骨架的三维电子显微镜可视化:含肌动蛋白和微管蛋白的结构的免疫铁蛋白鉴定。

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摘要

Cytoskeletons prepared by Triton X-100 treatment of tissue culture cells appear in stereo electron microscopy as a highly organized and interconnected three-dimensional matrix of different fibrous elements. Microfilament bundles and also tonofilament-like bundles are readily discerned when present in the cell type. In addition thinner fibers, some of which branch (smallest diameter 30--40 A), as well as fibers of larger diameter, some of which correspond to microtubules, can be seen. Since such cytoskeletons are an open, membrane-free system, individual fibrous organizations can be identified by specific antibodies. An indirect immunoferritin procedure using antibodies to tubulin or actin visualizes microtubules or actin-containing structures. Stereo electron microscopy of cytoskeletons decorated with actin antibody reveals, in addition to the F-actin-containing microfilament bundles, an extended fine actin lattice. This actin net is displayed throughout the cytoplasm not only between the microfilament bundles but also in those regions of the cytoskeleton that in the intact cell correspond to the submembraneous regions. Thus all actin-containing fibrous cytoplasmic structures may be interconnected in the living cell.
机译:通过Triton X-100处理的组织培养细胞制备的细胞骨架在立体电子显微镜中显示为高度组织且相互连接的不同纤维元素的三维矩阵。当存在于细胞类型中时,容易辨别微丝束以及类扁桃丝束。另外,可以看到较细的纤维,其中一些分支(最小直径为30--40 A),以及较大直径的纤维,其中一些对应于微管。由于此类细胞骨架是开放的,无膜的系统,因此可以通过特异性抗体来识别单个纤维组织。使用针对微管蛋白或肌动蛋白的抗体的间接免疫铁蛋白程序可将微管或含肌动蛋白的结构可视化。用肌动蛋白抗体修饰的细胞骨架的立体电子显微镜显示,除了含F-肌动蛋白的微丝束以外,还延伸出细化的肌动蛋白晶格。该肌动蛋白网不仅在微丝束之间而且在完整细胞中对应于膜下区域的那些细胞骨架区域中都显示在整个细胞质中。因此,所有含肌动蛋白的纤维质胞质结构可以在活细胞中相互连接。

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