生物
核出口信号
细胞生物学
真核小核糖体亚单位
核磷蛋白
核糖体蛋白
核糖体
核糖体生物发生
多形体
核仁
真核大核糖体亚单位
核糖体RNA
真核核糖体
细胞核
细胞质
生物化学
核糖核酸
基因
作者
Leonard B. Maggi,Michael Kuchenruether,David Y.A. Dadey,Rachel M. Schwope,Silvia Grisendi,R. Reid Townsend,Pier Paolo Pandolfi,Jason D. Weber
摘要
Nucleophosmin (NPM) (B23) is an essential protein in mouse development and cell growth; however, it has been assigned numerous roles in very diverse cellular processes.Here, we present a unified mechanism for NPM's role in cell growth; NPM directs the nuclear export of both 40S and 60S ribosomal subunits.NPM interacts with rRNA and large and small ribosomal subunit proteins and also colocalizes with large and small ribosomal subunit proteins in the nucleolus, nucleus, and cytoplasm.The transduction of NPM shuttlingdefective mutants or the loss of Npm1 inhibited the nuclear export of both the 40S and 60S ribosomal subunits, reduced the available pool of cytoplasmic polysomes, and diminished overall protein synthesis without affecting rRNA processing or ribosome assembly.While the inhibition of NPM shuttling can block cellular proliferation, the dramatic effects on ribosome export occur prior to cell cycle inhibition.Modest increases in NPM expression amplified the export of newly synthesized rRNAs, resulting in increased rates of protein synthesis and indicating that NPM is rate limiting in this pathway.These results support the idea that NPM-regulated ribosome export is a fundamental process in cell growth.
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