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核仁在细胞应激状态下控制蛋白质运输。

The Nucleolus Takes Control of Protein Trafficking Under Cellular Stress.

作者信息

Nalabothula Narasimharao, Indig Fred E, Carrier France

机构信息

Marlene and Stewart Greenebaum Cancer Center, University of Maryland, Baltimore, School of Medicine, Department of Radiation Oncology, Baltimore, Maryland.

出版信息

Mol Cell Pharmacol. 2010;2(5):203-212.

Abstract

The nucleolus is a highly dynamic nuclear substructure that was originally described as the site of ribosome biogenesis. The advent of proteomic analysis has now allowed the identification of over 4500 nucleolus associated proteins with only about 30% of them associated with ribogenesis (1). The great number of nucleolar proteins not associated with traditionally accepted nucleolar functions indicates a role for the nucleolus in other cellular functions such as mitosis, cell-cycle progression, cell proliferation and many forms of stress response including DNA repair (2). A number of recent reviews have addressed the pivotal role of the nucleolus in the cellular stress response (1, 3, 4). Here, we will focus on the role of Nucleolin and Nucleophosmin, two major components of the nucleolus, in response to genotoxic stress. Due to space constraint only a limited number of studies are cited. We thus apologize to all our colleagues whose works are not referenced here.

摘要

核仁是一种高度动态的核亚结构,最初被描述为核糖体生物合成的场所。蛋白质组学分析的出现,现在已经能够鉴定出超过4500种与核仁相关的蛋白质,其中只有约30%与核糖体生成有关(1)。大量与传统上公认的核仁功能无关的核仁蛋白表明,核仁在其他细胞功能中发挥作用,如有丝分裂、细胞周期进程、细胞增殖以及包括DNA修复在内的多种应激反应形式(2)。最近的一些综述探讨了核仁在细胞应激反应中的关键作用(1, 3, 4)。在这里,我们将重点关注核仁的两个主要成分核仁素和核磷蛋白在应对基因毒性应激中的作用。由于篇幅限制,仅引用了有限数量的研究。因此,我们向所有作品未在此引用的同事表示歉意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5320/3076688/06ca176be932/nihms262244f1.jpg

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