Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, Maryland 21205, USA.
Genes Dev. 2022 Jun 1;36(11-12):718-736. doi: 10.1101/gad.349604.122. Epub 2022 Jun 30.
Centrosomes are microtubule-organizing centers comprised of a pair of centrioles and the surrounding pericentriolar material. Abnormalities in centriole number are associated with cell division errors and can contribute to diseases such as cancer. Centriole duplication is limited to once per cell cycle and is controlled by the dosage-sensitive Polo-like kinase 4 (PLK4). Here, we show that PLK4 abundance is translationally controlled through conserved upstream open reading frames (uORFs) in the 5' UTR of the mRNA. uORFs suppress translation and prevent excess protein synthesis. Mice with homozygous knockout of uORFs ( ) are viable but display dramatically reduced fertility because of a significant depletion of primordial germ cells (PGCs). The remaining PGCs in mice contain extra centrioles and display evidence of increased mitotic errors. PGCs undergo hypertranscription and have substantially more mRNA than somatic cells. Reducing mRNA levels in mice lacking uORFs restored PGC numbers and fully rescued fertility. Together, our data uncover a specific requirement for uORF-dependent control of PLK4 translation in counterbalancing the increased transcription in PGCs. Thus, uORF-mediated translational suppression of PLK4 has a critical role in preventing centriole amplification and preserving the genomic integrity of future gametes.
中心体是由一对中心粒和周围的中心粒周围物质组成的微管组织中心。中心粒数量的异常与细胞分裂错误有关,并可能导致癌症等疾病。中心粒的复制仅限于每个细胞周期一次,并受剂量敏感的 Polo 样激酶 4 (PLK4) 控制。在这里,我们表明 PLK4 的丰度通过 mRNA 的 5'UTR 中的保守上游开放阅读框 (uORF) 进行翻译控制。uORF 抑制翻译并防止过量的蛋白质合成。uORF 纯合敲除的小鼠( )是有活力的,但由于原始生殖细胞 (PGC) 大量耗竭,显示出明显的生育力下降。 小鼠中剩余的 PGC 含有额外的中心粒,并显示出有丝分裂错误增加的证据。PGC 经历过度转录,并且比体细胞具有更多的 mRNA。在缺乏 uORF 的小鼠中降低 mRNA 水平恢复了 PGC 数量并完全挽救了生育能力。总之,我们的数据揭示了 uORF 依赖性控制 PLK4 翻译在平衡 PGC 中增加的 转录方面的特定需求。因此,uORF 介导的 PLK4 翻译抑制在防止中心粒扩增和维持未来配子的基因组完整性方面起着关键作用。