Department of Cancer Genetics & Epigenetics, Beckman Research Institute, City of Hope, Duarte, CA 91010.
Computational Therapeutic Core, City of Hope, Duarte, CA 91010.
Proc Natl Acad Sci U S A. 2020 Feb 18;117(7):3621-3626. doi: 10.1073/pnas.1910702117. Epub 2020 Feb 5.
Ten-eleven translocation (TET) family enzymes (TET1, TET2, and TET3) oxidize 5-methylcytosine (5mC) and generate 5-hydroxymethylcytosine (5hmC) marks on the genome. Each TET protein also interacts with specific binding partners and partly plays their role independent of catalytic activity. Although the basic role of TET enzymes is well established now, the molecular mechanism and specific contribution of their catalytic and noncatalytic domains remain elusive. Here, by combining in silico and biochemical screening strategy, we have identified a small molecule compound, C35, as a first-in-class TET inhibitor that specifically blocks their catalytic activities. Using this inhibitor, we explored the enzymatic function of TET proteins during somatic cell reprogramming. Interestingly, we found that C35-mediated TET inactivation increased the efficiency of somatic cell programming without affecting TET complexes. Using high-throughput mRNA sequencing, we found that by targeting 5hmC repressive marks in the promoter regions, C35-mediated TET inhibition activates the transcription of the BMP-SMAD-ID signaling pathway, which may be responsible for promoting somatic cell reprogramming. These results suggest that C35 is an important tool for inducing somatic cell reprogramming, as well as for dissecting the other biological functions of TET enzymatic activities without affecting their other nonenzymatic roles.
十 - 十一易位 (TET) 家族酶 (TET1、TET2 和 TET3) 氧化 5- 甲基胞嘧啶 (5mC),并在基因组上生成 5- 羟甲基胞嘧啶 (5hmC) 标记。每种 TET 蛋白还与特定的结合伴侣相互作用,并在一定程度上发挥其作用,而不依赖于催化活性。尽管 TET 酶的基本作用现在已经确立,但它们的催化和非催化结构域的分子机制和特定贡献仍然难以捉摸。在这里,我们通过结合计算机模拟和生化筛选策略,鉴定了一种小分子化合物 C35,它是一种新型的 TET 抑制剂,可特异性阻断其催化活性。使用这种抑制剂,我们探索了 TET 蛋白在体细胞重编程过程中的酶学功能。有趣的是,我们发现 C35 介导的 TET 失活可提高体细胞编程的效率,而不影响 TET 复合物。使用高通量 mRNA 测序,我们发现通过靶向启动子区域的 5hmC 抑制性标记,C35 介导的 TET 抑制激活了 BMP-SMAD-ID 信号通路的转录,这可能是促进体细胞重编程的原因。这些结果表明,C35 是诱导体细胞重编程的重要工具,同时也是在不影响其其他非酶活性的情况下,解析 TET 酶活性的其他生物学功能的重要工具。