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Two distinct modes of DNMT1 recruitment ensure stable maintenance DNA methylation

机译:两种明显的DNMT1招生模式确保稳定维持DNA甲基化

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Stable inheritance of DNA methylation is critical for maintaining differentiated phenotypes in multicellular organisms. We have recently identified dual mono-ubiquitylation of histone H3 (H3Ub2) by UHRF1 as an essential mechanism to recruit DNMT1 to chromatin. Here, we show that PCNA-associated factor 15 (PAF15) undergoes UHRF1-dependent dual mono-ubiquitylation (PAF15Ub2) on chromatin in a DNA replication-coupled manner. This event will, in turn, recruit DNMT1. During early S-phase, UHRF1 preferentially ubiquitylates PAF15, whereas H3Ub2 predominates during late S-phase. H3Ub2 is enhanced under PAF15 compromised conditions, suggesting that H3Ub2 serves as a backup for PAF15Ub2. In mouse ES cells, loss of PAF15Ub2 results in DNA hypomethylation at early replicating domains. Together, our results suggest that there are two distinct mechanisms underlying replication timing-dependent recruitment of DNMT1 through PAF15Ub2 and H3Ub2, both of which are prerequisite for high fidelity DNA methylation inheritance.
机译:DNA甲基化的稳定遗传对于维持多细胞生物中的分化表型至关重要。通过UHRF1最近通过UHRF1确定了组蛋白H3(H3UB2)的双重单体胞质,作为募集DNMT1至染色质的基本机制。这里,我们表明PCNA相关因子15(PAF15)以DNA复制耦合的方式在染色质中经历UHRF1依赖性双重单胞间菌(PAF15ub2)。反过来,这一事件招募了DNMT1。在早期的S相期间,UHRF1优先ubiquitylates PAF15,而H3ub2在后期S相期间占主导地位。 H3UB2在PAF15受损条件下增强,表明H3UB2用作PAF15UB2的备用。在小鼠ES细胞中,PAF15Ub2的丧失导致早期复制结构域的DNA低甲基化。我们的结果表明,通过PAF15ub2和H3B2的DNMT1依赖性依赖性募集的两种不同的机制,这两者都是高保真DNA甲基化遗传的先决条件。

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