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The mRNP remodeling mediated by UPF1 promotes rapid degradation of replication-dependent histone mRNA

机译:UPF1介导的mRNP重塑促进复制依赖性组蛋白mRNA的快速降解

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摘要

Histone biogenesis is tightly controlled at multiple steps to maintain the balance between the amounts of DNA and histone protein during the cell cycle. In particular, translation and degradation of replication-dependent histone mRNAs are coordinately regulated. However, the underlying molecular mechanisms remain elusive. Here, we investigate remodeling of stem-loop binding protein (SLBP)-containing histone mRNPs occurring during the switch from the actively translating mode to the degradation mode. The interaction between a CBP80/20-dependent translation initiation factor (CTIF) and SLBP, which is important for efficient histone mRNA translation, is disrupted upon the inhibition of DNA replication or at the end of S phase. This disruption is mediated by competition between CTIF and UPF1 for SLBP binding. Further characterizations reveal hyperphosphorylation of UPF1 by activated ATR and DNA-dependent protein kinase upon the inhibition of DNA replication interacts with SLBP more strongly, promoting the release of CTIF and eIF3 from SLBP-containing histone mRNP. In addition, hyperphosphorylated UPF1 recruits PNRC2 and SMG5, triggering decapping followed by 5'-to-3' degradation of histone mRNAs. The collective observations suggest that both inhibition of translation and recruitment of mRNA degradation machinery during histone mRNA degradation are tightly coupled and coordinately regulated by UPF1 phosphorylation.
机译:组蛋白的生物发生在多个步骤中受到严格控制,以在细胞周期中保持DNA和组蛋白的含量之间的平衡。特别地,复制依赖性组蛋白mRNA的翻译和降解受到协调调节。但是,潜在的分子机制仍然难以捉摸。在这里,我们研究了从主动翻译模式到降解模式转换过程中发生的含有茎环结合蛋白(SLBP)的组蛋白mRNPs的重塑。 CBP80 / 20依赖的翻译起始因子(CTIF)和SLBP之间的相互作用(对于有效的组蛋白mRNA的翻译很重要)在抑制DNA复制或在S期结束时被破坏。这种破坏是由CTIF和UPF1之间竞争SLBP结合介导的。进一步的特征表明,在抑制DNA复制后,激活的ATR和DNA依赖性蛋白激酶会导致UPF1过度磷酸化,从而与SLBP相互作用更强,从而促进CTIF和eIF3从含SLBP的组蛋白mRNP中释放出来。此外,超磷酸化的UPF1募集PNRC2和SMG5,触发脱盖,随后组蛋白mRNA从5'到3'降解。集体的观察结果表明,在组蛋白mRNA降解过程中,抑制翻译和募集mRNA降解机制均与UPF1磷酸化密切相关并受其调控。

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