Tiedemann Rochelle L, Hrit Joel, Du Qian, Wiseman Ashley K, Eden Hope E, Dickson Bradley M, Kong Xiangqian, Chomiak Alison A, Vaughan Robert M, Hebert Jakob M, David Yael, Zhou Wanding, Baylin Stephen B, Jones Peter A, Clark Susan J, Rothbart Scott B
bioRxiv. 2024 Feb 16:2024.02.13.580169. doi: 10.1101/2024.02.13.580169.
The RING E3 ubiquitin ligase UHRF1 is an established cofactor for DNA methylation inheritance. Nucleosomal engagement through histone and DNA interactions directs UHRF1 ubiquitin ligase activity toward lysines on histone H3 tails, creating binding sites for DNMT1 through ubiquitin interacting motifs (UIM1 and UIM2). Here, we profile contributions of UHRF1 and DNMT1 to genome-wide DNA methylation inheritance and dissect specific roles for ubiquitin signaling in this process. We reveal DNA methylation maintenance at low-density CpGs is vulnerable to disruption of UHRF1 ubiquitin ligase activity and DNMT1 ubiquitin reading activity through UIM1. Hypomethylation of low-density CpGs in this manner induces formation of partially methylated domains (PMD), a methylation signature observed across human cancers. Furthermore, disrupting DNMT1 UIM2 function abolishes DNA methylation maintenance. Collectively, we show DNMT1-dependent DNA methylation inheritance is a ubiquitin-regulated process and suggest a disrupted UHRF1-DNMT1 ubiquitin signaling axis contributes to the development of PMDs in human cancers.
环状 E3 泛素连接酶 UHRF1 是一种已确定的 DNA 甲基化遗传辅助因子。通过组蛋白和 DNA 相互作用进行的核小体结合将 UHRF1 泛素连接酶活性导向组蛋白 H3 尾巴上的赖氨酸,通过泛素相互作用基序(UIM1 和 UIM2)为 DNMT1 创建结合位点。在此,我们分析了 UHRF1 和 DNMT1 对全基因组 DNA 甲基化遗传的贡献,并剖析了泛素信号在此过程中的特定作用。我们发现低密度 CpG 位点的 DNA 甲基化维持容易受到 UHRF1 泛素连接酶活性和通过 UIM1 的 DNMT1 泛素识别活性破坏的影响。以这种方式导致的低密度 CpG 位点低甲基化会诱导部分甲基化结构域(PMD)的形成,这是在人类癌症中观察到的一种甲基化特征。此外,破坏 DNMT1 的 UIM2 功能会消除 DNA 甲基化维持。我们的研究结果共同表明,DNMT1 依赖性 DNA 甲基化遗传是一个泛素调节的过程,并提示 UHRF1 - DNMT1 泛素信号轴的破坏有助于人类癌症中 PMD 的形成。