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Restoration of TET2 Function Blocks Aberrant Self-Renewal and Leukemia Progression

机译:TET2功能恢复阻断异常自我更新和白血病进展

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Loss-of-function mutations in TET2 occur frequently in patients with clonal hematopoiesis, myelodysplastic syndrome (MDS), and acute myeloid leukemia (AML) and are associated with a DNA hypermethylation phenotype. To determine the role of TET2 deficiency in leukemia stem cell maintenance, we generated a reversible transgenic RNAi mouse to model restoration of endogenous Tet2 expression. Tet2 restoration reverses aberrant hematopoietic stem and progenitor cell (HSPC) self-renewal in vitro and in vivo. Treatment with vitamin C, a cofactor of Fe2+ and alpha-KG-dependent dioxygenases, mimics TET2 restoration by enhancing 5-hydroxymethylcytosine formation in Tet2-deficient mouse HSPCs and suppresses human leukemic colony formation and leukemia progression of primary human leukemia PDXs. Vitamin C also drives DNA hypomethylation and expression of a TET2-dependent gene signature in human leukemia cell lines. Furthermore, TET-mediated DNA oxidation induced by vitamin C treatment in leukemia cells enhances their sensitivity to PARP inhibition and could provide a safe and effective combination strategy to selectively target TET deficiency in cancer.
机译:TET2中的功能突变常见常见于克隆血液血液,骨髓增生术综合征(MDS)和急性髓性白血病(AML)和与DNA高甲基化表型相关的患者。为了确定TET2缺乏在白血病干细胞维持中的作用,我们产生了一种可逆转基因RNAi小鼠以模拟内源TET2表达的模拟恢复。 TET2恢复在体外和体内逆转异常造血干和祖细胞(HSPC)自我更新。用维生素C处理Fe2 +和α-Kg依赖性二氧化基酶的辅助因子,通过增强TET2缺陷小鼠HSPC中的5-羟甲基胞嘧啶形成,模拟TET2恢复,抑制人白血病形成和白血病的原发性白血病PDX。维生素C还驱动DNA低甲基化和人白血病细胞系中TET2依赖性基因签名的表达。此外,白血病细胞中维生素C治疗诱导的TET介导的DNA氧化增强了对PALP抑制的敏感性,可以提供安全有效的组合策略,以选择性地靶向癌症的TET缺陷。

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