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核仁滞留的翻译起始因子 C/EBPalpha 同工型可刺激 rDNA 转录和细胞大小。

Nucleolar retention of a translational C/EBPalpha isoform stimulates rDNA transcription and cell size.

机构信息

Leibniz Institute for Age Research-Fritz Lipmann Institute, Jena, Germany.

出版信息

EMBO J. 2010 Mar 3;29(5):897-909. doi: 10.1038/emboj.2009.404. Epub 2010 Jan 14.

Abstract

The messenger RNA of the intronless CEBPA gene is translated into distinct protein isoforms through the usage of consecutive translation initiation sites. These translational isoforms have distinct functions in the regulation of differentiation and proliferation due to the presence of different N-terminal sequences. Here, we describe the function of an N-terminally extended protein isoform of CCAAT enhancer-binding protein alpha (C/EBPalpha) that is translated from an alternative non-AUG initiation codon. We show that a basic amino-acid motif within its N-terminus is required for nucleolar retention and for interaction with nucleophosmin (NPM). In the nucleoli, extended-C/EBPalpha occupies the ribosomal DNA (rDNA) promoter and associates with the Pol I-specific factors upstream-binding factor 1 (UBF-1) and SL1 to stimulate rRNA synthesis. Furthermore, during differentiation of HL-60 cells, endogenous expression of extended-C/EBPalpha is lost concomitantly with nucleolar C/EBPalpha immunostaining probably reflecting the reduced requirement for ribosome biogenesis in differentiated cells. Finally, overexpression of extended-C/EBPalpha induces an increase in cell size. Altogether, our results suggest that control of rRNA synthesis is a novel function of C/EBPalpha adding to its role as key regulator of cell growth and proliferation.

摘要

无内含子的 CEBPA 基因的信使 RNA 通过连续使用翻译起始位点翻译成不同的蛋白同工型。由于存在不同的 N 端序列,这些翻译同工型在分化和增殖的调节中具有不同的功能。在这里,我们描述了一种从替代的非 AUG 起始密码子翻译而来的 CCAAT 增强结合蛋白α(C/EBPα)的 N 端延长蛋白同工型的功能。我们表明,其 N 端的碱性氨基酸基序对于核仁保留和与核仁磷酸蛋白(NPM)的相互作用是必需的。在核仁中,延长的 C/EBPα占据核糖体 DNA(rDNA)启动子,并与 Pol I 特异性因子上游结合因子 1(UBF-1)和 SL1 结合,以刺激 rRNA 合成。此外,在 HL-60 细胞分化过程中,内源性表达的延长 C/EBPα与核仁 C/EBPα免疫染色同时丢失,可能反映出分化细胞中对核糖体生物发生的需求降低。最后,过表达延长的 C/EBPα会导致细胞体积增加。总之,我们的研究结果表明,rRNA 合成的控制是 C/EBPα 的一个新功能,增加了其作为细胞生长和增殖关键调节剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c82d/2837168/7eb399235823/emboj2009404f1.jpg

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