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心脏浦肯野纤维中的中间(细胞骨架)丝。形态学与生化特征的关联及细胞骨架功能证据

Intermediate (skeletin) filaments in heart Purkinje fibers. A correlative morphological and biochemical identification with evidence of a cytoskeletal function.

作者信息

Eriksson A, Thornell L E

出版信息

J Cell Biol. 1979 Feb;80(2):231-47. doi: 10.1083/jcb.80.2.231.

Abstract

Cow Purkinje fibers contain a population of free cytoplasmic filaments which consistently differ in ultrastructural appearance from actin and myosin filaments, irrespective of preparation technique. The fixation and staining techniques, however, influenced the filament diameter, which was found to be 7.4--9.5 nm for filaments in plastic-embedded material, and 7.0 nm in cryo-sectioned material, thus intermediate as compared to actin and myosin filaments. Cross-sectional profiles suggested that the intermediate-sized filaments are composed of four subfilaments. To provide a basis for further biochemical investigations on the filaments, extraction procedures were carried out to remove other cell organelles. Electron microscopy showed that undulating bundles of intermediate filaments converging towards desmosomes still remained, after the extractions, together with Z-disk material. In spite of the extensive extraction, the shape of the individual cells and the assemblies of cell bundles remained intact. This confirms that the intermediate filaments of cow Purkinje fibers together with desmosomes do in fact have a cytoskeletal function. On account of (a) the cytoskeletal function of the filaments, (b) the similarities to the smooth muscle "100-A filament" protein subunit skeletin, and (c) the inadequate and confusing existing terminology, we suggest that the filaments be named "skeletin filaments."

摘要

牛浦肯野纤维含有一群游离的细胞质细丝,无论采用何种制备技术,其超微结构外观始终与肌动蛋白丝和肌球蛋白丝不同。然而,固定和染色技术会影响细丝直径,塑料包埋材料中的细丝直径为7.4 - 9.5纳米,冷冻切片材料中的细丝直径为7.0纳米,与肌动蛋白丝和肌球蛋白丝相比处于中间值。横截面轮廓表明,中等大小的细丝由四条亚细丝组成。为了为对细丝进行进一步的生化研究提供基础,进行了提取程序以去除其他细胞器。电子显微镜显示,提取后,仍有向桥粒汇聚的中间丝起伏束以及Z盘物质残留。尽管进行了广泛的提取,单个细胞的形状和细胞束的组装仍保持完整。这证实了牛浦肯野纤维的中间丝与桥粒实际上确实具有细胞骨架功能。鉴于(a)细丝的细胞骨架功能,(b)与平滑肌“100-A细丝”蛋白亚基骨架蛋白的相似性,以及(c)现有术语的不足和混乱,我们建议将这些细丝命名为“骨架蛋白细丝”。

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Three classes of filaments in cardiac differentiation.
J Ultrastruct Res. 1970 Dec;33(5):408-35. doi: 10.1016/s0022-5320(70)90171-1.
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