McCarty Gregory, Loeb David M
Department of Oncology, Division of Pediatric Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University, Baltimore, MD, United States of America.
PLoS One. 2015 Mar 20;10(3):e0119837. doi: 10.1371/journal.pone.0119837. eCollection 2015.
WT1 is a transcription factor expressed in hematopoietic stem cells and in most cases of myeloid leukemia. We investigated the roles of hypoxia and epigenetics in the regulation of WT1 expression in myeloid leukemia cells. WT1 expression correlates with hypomethylation of the CpG island in Intron 1, and pharmacologic demethylation of this CpG island induces WT1 mRNA expression. Hypoxia causes decreases in DNMT expression and activity and increased expression and activity of TET2 and TET3, resulting in demethylation of this CpG island and expression of WT1 mRNA. Demethylation of the CpG island, either from pharmacologic treatment or induction of hypoxia, results in transcription of an antisense-oriented lncRNA, and inhibiting lncRNA expression with shRNA blocks WT1 mRNA expression. These results reveal a novel model of hypoxia-mediated epigenetic gene regulation. In addition, this is the first report that TET2 and TET3, increasingly recognized as important epigenetic regulators of gene expression in stem cells and in cancer cells, can be regulated by hypoxia, providing a solid mechanistic link between hypoxia and epigenetic regulation of gene expression with important implications for the role of hypoxia in stem cell function.
WT1是一种在造血干细胞和大多数髓系白血病病例中表达的转录因子。我们研究了缺氧和表观遗传学在髓系白血病细胞中WT1表达调控中的作用。WT1的表达与内含子1中CpG岛的低甲基化相关,该CpG岛的药物去甲基化可诱导WT1 mRNA表达。缺氧导致DNA甲基转移酶(DNMT)的表达和活性降低,以及TET2和TET3的表达和活性增加,导致该CpG岛去甲基化并使WT1 mRNA表达。无论是药物治疗还是缺氧诱导导致的CpG岛去甲基化,都会导致反义方向lncRNA的转录,用短发夹RNA(shRNA)抑制lncRNA表达会阻断WT1 mRNA表达。这些结果揭示了一种缺氧介导的表观遗传基因调控新模型。此外,这是首次报道TET2和TET3(越来越被认为是干细胞和癌细胞中基因表达的重要表观遗传调节因子)可受缺氧调控,为缺氧与基因表达的表观遗传调控之间提供了坚实的机制联系,对缺氧在干细胞功能中的作用具有重要意义。