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在非洲爪蟾放大的核仁中显示出由蛋白质细丝构成的核仁骨架。

A nucleolar skeleton of protein filaments demonstrated in amplified nucleoli of Xenopus laevis.

作者信息

Franke W W, Kleinschmidt J A, Spring H, Krohne G, Grund C, Trendelenburg M F, Stoehr M, Scheer U

出版信息

J Cell Biol. 1981 Aug;90(2):289-99. doi: 10.1083/jcb.90.2.289.

Abstract

The amplified, extrachromosomal nucleoli of Xenopus oocytes contain a meshwork of approximately 4-nm-thick filaments, which are densely coiled into higher-order fibrils of diameter 30-40 nm and are resistant to treatment with high- and low-salt concentrations, nucleases (DNase I, pancreatic RNase, micrococcal nuclease), sulfhydryl agents, and various nonionic detergents. This filamentous "skeleton" has been prepared from manually isolated nuclear contents and nucleoli as well as from nucleoli isolated by fluorescence-activated particle sorting. The nucleolar skeletons are observed in light and electron microscopy and are characterized by ravels of filaments that are especially densely packed in the nucleolar cortex. DNA as well as RNA are not constituents of this structure, and precursors to ribosomal RNAs are completely removed from the extraction-resistant filaments by treatment with high-salt buffer or RNase. Fractions of isolated nucleolar skeletons show specific enrichment of an acidic major protein of 145,000 mol wt and an apparent pI value of approximately 6.15, accompanied in some preparations by various amounts of minor proteins. The demonstration of this skeletal structure in "free" extrachromosomal nucleoli excludes the problem of contaminations by nonnucleolar material such as perinucleolar heterochromatin normally encountered in studies of nucleoli from somatic cells. It is suggested that this insoluble protein filament complex forms a skeleton specific to the nucleolus proper that is different from other extraction-resistant components of the nucleus such as matrix and lamina and is involved in the spatial organization of the nucleolar chromatin and its transcriptional products.

摘要

非洲爪蟾卵母细胞中扩增的染色体外核仁含有一个由大约4纳米厚的细丝组成的网络,这些细丝紧密盘绕成直径为30 - 40纳米的高阶纤维,并且对高盐和低盐浓度处理、核酸酶(脱氧核糖核酸酶I、胰核糖核酸酶、微球菌核酸酶)、巯基试剂以及各种非离子去污剂具有抗性。这种丝状“骨架”已从手动分离的核内容物和核仁以及通过荧光激活颗粒分选分离的核仁中制备出来。在光学显微镜和电子显微镜下都能观察到核仁骨架,其特征是细丝缠绕,在核仁皮质中尤其密集堆积。DNA和RNA都不是这种结构的组成成分,通过用高盐缓冲液或核糖核酸酶处理,核糖体RNA的前体已从抗提取细丝中完全去除。分离的核仁骨架部分显示出一种酸性主要蛋白质的特异性富集,该蛋白质分子量为145,000道尔顿,表观等电点约为6.15,在某些制备物中还伴有各种少量蛋白质。在“游离”的染色体外核仁中证明这种骨架结构排除了非核仁物质污染的问题,例如在体细胞核仁研究中通常遇到的核仁周围异染色质。有人提出这种不溶性蛋白质细丝复合体形成了一种特定于核仁本身的骨架,它不同于细胞核中其他抗提取成分,如核基质和核纤层,并且参与核仁染色质及其转录产物的空间组织。

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