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Targeting PML in triple negative breast cancer elicits growth suppression and senescence

机译:靶向三重阴性乳腺癌中的PML引发生长抑制和衰老

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Oncogene addiction postulates that the survival and growth of certain tumor cells is dependent upon the activity of one oncogene, despite their multiple genetic and epigenetic abnormalities. This phenomenon provides a foundation for molecular targeted therapy and a rationale for oncogene-based stratification. We have previously reported that the Promyelocytic Leukemia protein (PML) is upregulated in triple negative breast cancer (TNBC) and it regulates cancer-initiating cell function, thus suggesting that this protein can be therapeutically targeted in combination with PML-based stratification. However, the effects of PML perturbation on the bulk of tumor cells remained poorly understood. Here we demonstrate that TNBC cells are addicted to the expression of this nuclear protein. PML inhibition led to a remarkable growth arrest combined with features of senescence in vitro and in vivo. Mechanistically, the growth arrest and senescence were associated to a decrease in MYC and PIM1 kinase levels, with the subsequent accumulation of CDKN1B (p27), a trigger of senescence. In line with this notion, we found that PML is associated to the promoter regions of MYC and PIM1, consistent with their direct correlation in breast cancer specimens. Altogether, our results provide a feasible explanation for the functional similarities of MYC, PIM1, and PML in TNBC and encourage further study of PML targeting strategies for the treatment of this breast cancer subtype.
机译:癌症成瘾假设某些肿瘤细胞的存活率和生长取决于一种癌基因的活性,尽管它们具有多种遗传和表观遗传异常。这种现象为分子靶向治疗提供了基础的基础基础基于基于癌基因的分层的基础。我们此前据报道,幼幼细胞白血病蛋白(PML)在三重阴性乳腺癌(TNBC)中是上调,并且它调节癌症引发细胞功能,因此表明该蛋白质可以与基于PML的分层组合治疗靶向。然而,PML扰动对大部分肿瘤细胞的影响仍然很差。在这里,我们证明TNBC细胞沉迷于该核蛋白的表达。 PML抑制导致了显着的生长逮捕,与体外和体内衰老的特征结合。机械地,生长停滞和衰老与MYC和PIM1激酶水平的降低有关,随后的CDKN1B(P27)积累,衰老的触发器。符合此概念,我们发现PML与MyC和PIM1的启动子区域相关联,与其在乳腺癌标本中的直接相关。完全,我们的结果为TNBC中的MYC,PIM1和PML的功能相似性提供了可行的解释,并促进进一步研究PML靶向策略以治疗这种乳腺癌亚型。

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