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亲核蛋白通过卵母细胞核孔的移动。

Movement of a karyophilic protein through the nuclear pores of oocytes.

作者信息

Feldherr C M, Kallenbach E, Schultz N

出版信息

J Cell Biol. 1984 Dec;99(6):2216-22. doi: 10.1083/jcb.99.6.2216.

DOI:10.1083/jcb.99.6.2216
PMID:6501421
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2113580/
Abstract

It has recently been shown that large karyophilic proteins are transported across the nuclear envelope in amphibian oocytes. In consideration of this, the present experiments were performed to identify the specific sites within the envelope through which transport occurs and determine if molecular size is a limiting factor in the transport process. The following experimental procedure was employed: Colloidal gold particles, varying in size from approximately 20 to 170 A in diameter were coated with nucleoplasmin, a 165,000-mol-wt karyophilic protein, which is known to be transported through the envelope. The coated gold particles were microinjected into the cytoplasm of Xenopus oocytes, and the cells were fixed 15 min and 1 h later. The intracellular localization of the gold was then determined with the electron microscope. It was found that nucleoplasmin-coated particles readily enter the nucleus. On the basis of the distribution of the particles associated with the envelope, we concluded that transport occurs through the nuclear pores. Furthermore, the size distributions of the gold particles present in the nucleus and cytoplasm were not significantly different, indicating that the envelope does not discriminate among particles with diameters ranging from 50 to 200 A (the dimensions including the nucleoplasmin coat). Colloidal gold coated with trypsin-digested nucleoplasmin (which lacks the polypeptide domain required for transport) or exogenous polyvinylpyrrolidone were largely excluded from the nucleus and showed no evidence of transport.

摘要

最近研究表明,在两栖类卵母细胞中,大型亲核蛋白可穿过核膜进行运输。鉴于此,开展了本实验以确定核膜上运输发生的特定位点,并确定分子大小是否为运输过程中的限制因素。采用了以下实验步骤:用核质蛋白(一种已知可穿过核膜运输的165,000道尔顿亲核蛋白)包被直径约20至170埃不等的胶体金颗粒。将包被的金颗粒显微注射到非洲爪蟾卵母细胞的细胞质中,15分钟和1小时后固定细胞。然后用电子显微镜确定金颗粒在细胞内的定位。发现核质蛋白包被的颗粒很容易进入细胞核。根据与核膜相关的颗粒分布,我们得出结论,运输是通过核孔进行的。此外,细胞核和细胞质中存在的金颗粒的大小分布没有显著差异,这表明核膜不会区分直径在50至200埃范围内(包括核质蛋白包被的尺寸)的颗粒。用胰蛋白酶消化的核质蛋白(缺乏运输所需的多肽结构域)或外源性聚乙烯吡咯烷酮包被的胶体金在很大程度上被排除在细胞核外,且没有运输的迹象。

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