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A spontaneous Cdt1 mutation in 129 mouse strains reveals a regulatory domain restraining replication licensing

机译:129个小鼠品系中的自发 Cdt1 突变揭示了限制复制许可的调节域

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Cdt1 is required for loading the replicative DNA helicase MCM2 /7, a process known as DNA replication licensing. Here we show that 129 mouse strains express a Cdt1 mutated allele with enhanced licensing activity. The mutation, named Δ6PEST, involves a six-amino acid deletion within a previously uncharacterized PEST-like domain. Cdt1 Δ6PEST and more extensive deletions exhibit increased re-replication and transformation activities that are independent of the Geminin and E3 ligase pathways. This PEST domain negatively regulates cell cycle-dependent chromatin recruitment of Cdt1 in G2/M phases of the cell cycle. Mass spectrometry analysis indicates that Cdt1 is phosphorylated at sites within the deleted PEST domain during mitosis. This study reveals a conserved new regulatory Cdt1 domain crucial for proper DNA licensing activity and suggests a mechanism by which the presence of Cdt1 in G2/M phases does not lead to premature origin licensing. These results also question the usage of 129 mouse strains for knockout analyses.
机译:加载复制性DNA解旋酶MCM2 / 7需要Cdt1,该过程称为DNA复制许可。在这里,我们显示129个小鼠品系表达具有增强许可活性的Cdt1突变等位基因。名为Δ 6 PEST的突变涉及一个以前未表征的PEST样结构域内的六个氨基酸缺失。 Cdt1Δ 6 PEST和更广泛的缺失表现出增加的复制和转化活性,而与Geminin和E3连接酶途径无关。该PEST域在细胞周期的G2 / M期负调节Cdt1的细胞周期依赖性染色质募集。质谱分析表明,在有丝分裂期间,Cdt1在缺失的PEST域内的位点被磷酸化。这项研究揭示了保守的新的监管Cdt1域对正常的DNA许可活动至关重要,并提出了一种机制,通过这种机制,G2 / M期中Cdt1的存在不会导致过早的起源许可。这些结果也质疑了使用129种小鼠品系进行基因敲除分析。

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