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用快速冷冻深度蚀刻技术揭示的海胆卵非皮质区域抗去垢剂细胞骨架的超微结构。

Ultrastructure of detergent-resistant cytoskeletons in the noncortical domain of sea urchin eggs as revealed by the quick-freeze deep-etch technique.

作者信息

Hisanaga S, Endo S, Hirokawa N, Sakai H, Pudles J

机构信息

Department of Anatomy and Cell Biology, Faculty of Medicine, University of Tokyo, Japan.

出版信息

Cell Struct Funct. 1992 Oct;17(5):277-85. doi: 10.1247/csf.17.277.

Abstract

The ultrastructure of detergent-resistant cytoskeletons in the noncortical cytoplasm of sea urchin eggs was studied by quick-freeze, deep-etch electron microscopy. Two different cytoskeletal organizations were identified in the detergent-treated sea urchin eggs. They were distinguished by the presence or the absence of long actin filaments and probably correspond to the cortex and the noncortical cytoplasm, respectively. The non-cortical cytoplasm was composed of a complex network (designated here as the ground network) of filaments 6 to 13 nm in diameter, that interconnected aggregates of small globular materials, yolk granules and a meshwork of uniform filaments (8-9 nm in diameter). The 6 to 13 nm filaments comprising the ground network were branched and associated with filaments of the same or other sizes, resulting in the formation of an extremely complex network. The meshwork of 8-9 nm filaments was homogeneous in composition and constitutes a novel structure which has not been previously described. The 8-9 nm filaments were connected to one another at their ends, forming a meshwork of polygons. Meshworks, ranging up to 3 microns in diameter, were distributed throughout the non-cortical cytoplasm of the egg. Similar cytoplasmic structures were also observed in fertilized eggs.

摘要

通过快速冷冻、深度蚀刻电子显微镜技术,对海胆卵非皮质细胞质中耐去污剂细胞骨架的超微结构进行了研究。在经去污剂处理的海胆卵中鉴定出两种不同的细胞骨架组织。它们的区别在于是否存在长肌动蛋白丝,可能分别对应于皮质和非皮质细胞质。非皮质细胞质由直径6至13纳米的细丝组成的复杂网络(此处称为基础网络)构成,该网络将小球状物质、卵黄颗粒的聚集体以及均匀细丝(直径8 - 9纳米)的网络相互连接。构成基础网络的6至13纳米细丝是分支状的,并与相同或其他尺寸的细丝相关联,从而形成极其复杂的网络。8 - 9纳米细丝的网络在组成上是均匀的,构成了一种先前未被描述过的新结构。8 - 9纳米细丝在其末端相互连接,形成多边形网络。直径达3微米的网络分布在卵的整个非皮质细胞质中。在受精卵中也观察到了类似的细胞质结构。

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