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SCF-FBXO31 E3 ligase targets DNA replication factor Cdt1 for proteolysis in the G2 phase of cell cycle to prevent Re-replication

机译:sCF-FBXO31 E3连接酶靶向DNa复制因子Cdt1在细胞周期的G2期进行蛋白水解以防止再复制

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摘要

FBXO31 was originally identified as a putative tumor suppressor gene in breast, ovarian, hepatocellular, and prostate cancers. By screening a set of cell cycle-regulated proteins as potential FBXO31 interaction partners, we have now identified Cdt1 as a novel substrate. Cdt1 DNA replication licensing factor is part of the pre-replication complex and essential for the maintenance of genomic integrity. We show that FBXO31 specifically interacts with Cdt1 and regulates its abundance by ubiquitylation leading to subsequent degradation. We also show that Cdt1 regulation by FBXO31 is limited to the G2 phase of the cell cycle and is independent of the pathways previously described for Cdt1 proteolysis in S and G2 phase. FBXO31 targeting of Cdt1 is mediated through the N terminus of Cdt1, a region previously shown to be responsible for its cell cycle regulation. Finally, we show that Cdt1 stabilization due to FBXO31 depletion results in re-replication. Our data present an additional pathway that contributes to the FBXO31 function as a tumor suppressor.
机译:FBXO31最初被确定为乳腺癌,卵巢癌,肝细胞癌和前列腺癌的推定肿瘤抑制基因。通过筛选一组细胞周期调节蛋白作为潜在的FBXO31相互作用的伙伴,我们现在已经确定Cdt1为新型底物。 Cdt1 DNA复制许可因子是复制前复合体的一部分,对于维持基因组完整性至关重要。我们表明,FBXO31专门与Cdt1相互作用,并通过泛素化调节其丰度,从而导致随后的降解。我们还显示,FBXO31对Cdt1的调控仅限于细胞周期的G2期,并且与先前描述的Sd和G2期Cdt1蛋白水解的途径无关。 FBXO31靶向Cdt1是通过Cdt1的N端介导的,Cdt1的N端以前被证明负责其细胞周期调节。最后,我们显示由于FBXO31耗尽而导致Cdt1稳定导致重复复制。我们的数据显示了有助于FBXO31发挥抑癌作用的其他途径。

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