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Cdk1 gates cell cycle-dependent tRNA synthesis by regulating RNA polymerase III activity

机译:CDK1通过调节RNA聚合酶III活性来缩闭依赖于细胞周期的TRNA合成

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摘要

tRNA genes are transcribed by RNA polymerase III (RNAPIII). During recent years it has become clear that RNAPIII activity is strictly regulated by the cell in response to environmental cues and the homeostatic status of the cell. However, the molecular mechanisms that control RNAPIII activity to regulate the amplitude of tDNA transcription in normally cycling cells are not well understood. Here, we show that tRNA levels fluctuate during the cell cycle and reveal an underlying molecular mechanism. The cyclin Clb5 recruits the cyclin dependent kinase Cdk1 to tRNA genes to boost tDNA transcription during late S phase. At tDNA genes, Cdk1 promotes the recruitment of TFIIIC, stimulates the interaction between TFIIIB and TFIIIC, and increases the dynamics of RNA polymerase III in vivo. Furthermore, we identified Bdp1 as a putative Cdk1 substrate in this process. Preventing Bdp1 phosphorylation prevented cell cycle-dependent recruitment of TFIIIC and abolished the cell cycle-dependent increase in tDNA transcription. Our findings demonstrate that under optimal growth conditions Cdk1 gates tRNA synthesis in S phase by regulating the RNAPIII machinery, revealing a direct link between the cell cycle and RNAPIII activity.
机译:TRNA基因由RNA聚合酶III(RNAPIII)转录。近年来,很明显,rnapiii活性由细胞严格调节,以应对环境提示和细胞的稳态状态。然而,控制RNAPIII活性来调节正常循环细胞中TDNA转录幅度的分子机制尚不清楚。在这里,我们表明TRNA水平在细胞周期期间波动并揭示潜在的分子机制。细胞周期蛋白CLB5促进细胞周期蛋白依赖性激酶CDK1至TRNA基因,以在后期的阶段增加TDNA转录。在T-DNA基因,对Cdk1促进TFIIIC的募集,刺激TFIIIB和TFIIIC之间的相互作用,提高RNA的动态聚合酶在体内III。此外,在该过程中,我们将BDP1识别为推定的CDK1衬底。防止BDP1磷酸化防止细胞周期依赖性TFIIIC募集并废除了TDNA转录的细胞周期依赖性增加。我们的研究结果表明,通过调节RNAPIII机械,在最佳生长条件下,CDK1栅极在S相中合成,揭示细胞周期与RNAPIII活性之间的直接联系。

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