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非洲爪蟾卵母细胞生发泡核膜的选择性消化:核纤层可能的结构作用。

Selective digestion of nuclear envelopes from Xenopus oocyte germinal vesicles: possible structural role for the nuclear lamina.

作者信息

Whytock S, Moir R D, Stewart M

机构信息

MRC Laboratory of Molecular Biology, UK.

出版信息

J Cell Sci. 1990 Nov;97 ( Pt 3):571-80. doi: 10.1242/jcs.97.3.571.

Abstract

We have used enzymic digestion as a structural probe to investigate components of the nuclear envelope of germinal vesicles from Xenopus oocytes. Previous studies have shown that these envelopes are composed of a double membrane in which nuclear pore complexes are embedded. The nuclear pore complexes are linked to a fibrous lamina that underlies the nucleoplasmic face of the envelope. The pores are also linked by pore-connecting fibrils that attach near their cytoplasmic face. Xenopus oocyte nuclear envelopes were remarkably resistant to extraction with salt solutions and, even after treatment with 1 M NaCl or 3 M MgCl2, pores, lamina and pore-connecting fibrils remained intact. However, mild proteolysis with trypsin selectively removed the lamina fibres from Triton-extracted nuclear envelopes to leave only the pore complexes and connecting fibrils. This observation confirmed that the pore-connecting fibrils were different from the lamina fibres and were probably constructed from different proteins. Trypsin digestion followed by Triton treatment resulted in the complete disintegration of the nuclear envelope, providing direct evidence for a structural role for the lamina in maintaining envelope integrity. Digestion with ribonuclease did not produce any marked change in the structure of Triton-extracted nuclear envelopes, indicating that probably neither the pore-connecting fibrils nor the cytoplasmic granules on the pore complexes contained a substantial proportion of RNA that was vital for their structural integrity.

摘要

我们使用酶消化作为一种结构探测手段,来研究非洲爪蟾卵母细胞生发泡核膜的组成成分。先前的研究表明,这些核膜由双层膜组成,核孔复合体嵌入其中。核孔复合体与位于核膜核质面下方的纤维状核层相连。这些孔还通过连接孔纤维相连,连接孔纤维附着在孔的细胞质面附近。非洲爪蟾卵母细胞核膜对盐溶液提取具有显著抗性,即使在用1M氯化钠或3M氯化镁处理后,孔、核层和连接孔纤维仍保持完整。然而,用胰蛋白酶进行温和的蛋白水解可选择性地从经 Triton 处理的核膜中去除核层纤维,仅留下孔复合体和连接纤维。这一观察结果证实,连接孔纤维与核层纤维不同,可能由不同的蛋白质构成。胰蛋白酶消化后再进行 Triton 处理导致核膜完全解体,为核层在维持核膜完整性方面的结构作用提供了直接证据。用核糖核酸酶消化并未使经 Triton 处理的核膜结构产生任何明显变化,这表明连接孔纤维和孔复合体上的细胞质颗粒可能都不含有对其结构完整性至关重要的大量RNA。

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