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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >The Rio1 protein kinases/ATPases: conserved regulators of growth, division, and genomic stability
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The Rio1 protein kinases/ATPases: conserved regulators of growth, division, and genomic stability

机译:RIO1蛋白激酶/ ATPASES:保守的生长调节剂,划分和基因组稳定性

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摘要

The atypical Rio1 protein kinases/ATPases, which exist in most archaea and eukaryotes, have been studied intensely to understand how they promote small ribosomal subunit (SSU) maturation. However, mutant and knockdown phenotypes in various organisms suggested roles in activities beyond SSU biogenesis, including the regulation of cell cycle progression (DNA transcription, replication, condensation, and segregation), cell division, metabolism, physiology, and development. Recent work with budding yeast, indeed, revealed that Rio1 (RIOK1 in metazoans) manages a large signaling network at the protein and gene levels via which it stimulates or restricts growth and division in response to nutrient availability. We examine how these findings translate to human cells and suggest that RIOK1 over-expression or mutations, as observed in primary cancer cells, may cause a mis-regulation of its network, contributing to cancer initiation and progression. We also reflect on how targeting RIOK1 might eradicate hitherto incurable tumors in the clinic.
机译:在大多数archaea和真核生物中存在的非典型RiO1蛋白激酶/ ATP酶,以了解它们如何促进小核糖体亚基(SSU)成熟。然而,各种生物中的突变体和敲低表型在SSU生物发生的活动中提出了作用,包括调节细胞周期进展(DNA转录,复制,缩合和分离),细胞分裂,代谢,生理学和发展。实际上,崭露头角酵母的合作表明,RIO1(Metazoans中的RIOK1)在蛋白质和基因水平上管理大信令网络,通过该蛋白质和基因水平刺激或限制营养利用的生长和分裂。我们研究这些发现如何转化为人体细胞并表明在原发性癌细胞中观察到的RIOK1过表达或突变可能导致其网络的错误调节,有助于癌症启动和进展。我们还反映了靶向Riok1可能在诊所中消除迄今为止的肿瘤。

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