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首页> 外文期刊>Molecular Therapy - Oncolytics >Targeting Histone Methyltransferase DOT1L by a Novel Psammaplin A Analog Inhibits Growth and Metastasis of Triple-Negative Breast Cancer
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Targeting Histone Methyltransferase DOT1L by a Novel Psammaplin A Analog Inhibits Growth and Metastasis of Triple-Negative Breast Cancer

机译:靶向组蛋白甲基转移酶DOT1L的新型Psammaplin A类似物抑制三阴性乳腺癌的生长和转移。

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Triple-negative breast cancer (TNBC) is the most intractable cancer in women with a high risk of metastasis. While hyper-methylation of histone H3 catalyzed by disruptor of telomeric silencing 1-like (DOT1L), a specific methyltransferase for histone H3 at lysine residue 79 (H3K79), is reported as a potential target for TNBCs, early developed nucleoside-type DOT1L inhibitors are not sufficient for effective inhibition of growth and metastasis of TNBC cells. We found that TNBC cells had a high expression level of DOT1L and a low expression level of E-cadherin compared to normal breast epithelial cells and non-TNBC cells. Here, a novel psammaplin A analog (PsA-3091) exhibited a potent inhibitory effect of DOT1L-mediated H3K79 methylation. Consistently, PsA-3091 also significantly inhibited the proliferation, migration, and invasion of TNBC cells along with the augmented expression of E-cadherin and the suppression of N-cadherin, ZEB1, and vimentin expression. In an orthotopic mouse model, PsA-3091 effectively inhibited lung metastasis and tumor growth by the regulation of DOT1L activity and EMT biomarkers. Together, we report here a new template of DOT1L inhibitor and suggest that targeting DOT1L-mediated H3K79 methylation by a novel PsA analog may be a promising strategy for the treatment of metastatic breast cancer patients.
机译:三阴性乳腺癌(TNBC)是转移风险高的女性中最难治的癌症。据报道,端粒沉默1样(DOT1L)的破坏者催化组蛋白H3的超甲基化,据报道,赖氨酸残基79(H3K79)上组蛋白H3的特定甲基转移酶是TNBCs的潜在靶标,而早期开发的核苷型DOT1L抑制剂不足以有效抑制TNBC细胞的生长和转移。我们发现,与正常乳腺上皮细胞和非TNBC细胞相比,TNBC细胞具有较高的DOT1L表达水平和较低的E-钙粘蛋白表达水平。在这里,新的psammaplin A类似物(PsA-3091)表现出DOT1L介导的H3K79甲基化的有效抑制作用。一致地,PsA-3091还显着抑制TNBC细胞的增殖,迁移和侵袭,并增强E-钙粘蛋白的表达并抑制N-钙粘蛋白,ZEB1和波形蛋白的表达。在原位小鼠模型中,PsA-3091通过调节DOT1L活性和EMT生物标记物有效抑制肺转移和肿瘤生长。在一起,我们在这里报告了DOT1L抑制剂的新模板,并建议通过新型PsA类似物靶向DOT1L介导的H3K79甲基化可能是治疗转移性乳腺癌患者的有前途的策略。

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