核磷蛋白
核糖体生物发生
生物
核出口信号
细胞生物学
核糖体蛋白
核仁
内输蛋白
核糖体
核蛋白
核运输
细胞核
细胞质
遗传学
核糖核酸
转录因子
基因
作者
Yue Yu,Leonard B. Maggi,Suzanne N. Brady,Anthony J. Apicelli,Mu‐Shui Dai,Hua Lu,Jason D. Weber
标识
DOI:10.1128/mcb.26.10.3798-3809.2006
摘要
Nucleophosmin (NPM/B23) is a key regulator in the regulation of a number of processes including centrosome duplication, maintenance of genomic integrity, and ribosome biogenesis. While the mechanisms underlying NPM function are largely uncharacterized, NPM loss results in severe dysregulation of developmental and growth-related events. We show that NPM utilizes a conserved CRM1-dependent nuclear export sequence in its amino terminus to enable its shuttling between the nucleolus/nucleus and cytoplasm. In search of NPM trafficking targets, we biochemically purified NPM-bound protein complexes from HeLa cell lysates. Consistent with NPM's proposed role in ribosome biogenesis, we isolated ribosomal protein L5 (rpL5), a known chaperone for the 5S rRNA. Direct interaction of NPM with rpL5 mediated the colocalization of NPM with maturing nuclear 60S ribosomal subunits, as well as newly exported and assembled 80S ribosomes and polysomes. Inhibition of NPM shuttling or loss of NPM blocked the nuclear export of rpL5 and 5S rRNA, resulting in cell cycle arrest and demonstrating that NPM and its nuclear export provide a unique and necessary chaperoning activity to rpL5/5S.
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