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TET 介导的超甲基化使 SDH 缺陷细胞为 HIF2α 驱动的间充质转化做好准备。

TET-Mediated Hypermethylation Primes SDH-Deficient Cells for HIF2α-Driven Mesenchymal Transition.

机构信息

Université de Paris, PARCC, INSERM, Equipe Labellisée par la Ligue contre le Cancer, 75015 Paris, France.

Programme Cartes d'Identité des Tumeurs, Ligue Nationale Contre Le Cancer, 75013 Paris, France.

出版信息

Cell Rep. 2020 Mar 31;30(13):4551-4566.e7. doi: 10.1016/j.celrep.2020.03.022.

Abstract

Loss-of-function mutations in the SDHB subunit of succinate dehydrogenase predispose patients to aggressive tumors characterized by pseudohypoxic and hypermethylator phenotypes. The mechanisms leading to DNA hypermethylation and its contribution to SDH-deficient cancers remain undemonstrated. We examine the genome-wide distribution of 5-methylcytosine and 5-hydroxymethylcytosine and their correlation with RNA expression in SDHB-deficient tumors and murine Sdhb cells. We report that DNA hypermethylation results from TET inhibition. Although it preferentially affects PRC2 targets and known developmental genes, PRC2 activity does not contribute to the DNA hypermethylator phenotype. We also prove, in vitro and in vivo, that TET silencing, although recapitulating the methylation profile of Sdhb cells, is not sufficient to drive their EMT-like phenotype, which requires additional HIF2α activation. Altogether, our findings reveal synergistic roles of TET repression and pseudohypoxia in the acquisition of metastatic traits, providing a rationale for targeting HIF2α and DNA methylation in SDH-associated malignancies.

摘要

SDHB 亚单位中功能丧失突变使患者易患具有假性缺氧和高甲基化表型的侵袭性肿瘤。导致 DNA 高甲基化的机制及其对 SDH 缺陷型癌症的贡献仍未得到证实。我们研究了 5-甲基胞嘧啶和 5-羟甲基胞嘧啶在 SDHB 缺陷型肿瘤和鼠 Sdhb 细胞中的全基因组分布及其与 RNA 表达的相关性。我们报告说,DNA 高甲基化是由 TET 抑制引起的。尽管它优先影响 PRC2 靶点和已知的发育基因,但 PRC2 活性对 DNA 高甲基化表型没有贡献。我们还在体外和体内证明,尽管 TET 沉默可以重现 Sdhb 细胞的甲基化谱,但不足以驱动其 EMT 样表型,这需要额外的 HIF2α 激活。总的来说,我们的研究结果揭示了 TET 抑制和假性缺氧在获得转移特性中的协同作用,为靶向 HIF2α 和 SDH 相关恶性肿瘤中的 DNA 甲基化提供了依据。

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