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H19/let-7/LIN28 reciprocal negative regulatory circuit promotes breast cancer stem cell maintenance

机译:H19 / let-7 / LIN28反向负调控电路促进乳腺癌干细胞维护

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摘要

Long noncoding RNA-H19 ( H19 ), an imprinted oncofetal gene, has a central role in carcinogenesis. Hitherto, the mechanism by which H19 regulates cancer stem cells, remains elusive. Here we show that breast cancer stem cells (BCSCs) express high levels of H19 , and ectopic overexpression of H19 significantly promotes breast cancer cell clonogenicity, migration and mammosphere-forming ability. Conversely, silencing of H19 represses these BCSC properties. In concordance, knockdown of H19 markedly inhibits tumor growth and suppresses tumorigenesis in nude mice. Mechanistically, we found that H19 functions as a competing endogenous RNA to sponge miRNA let-7, leading to an increase in expression of a let-7 target, the core pluripotency factor LIN28, which is enriched in BCSC populations and breast patient samples. Intriguingly, this gain of LIN28 expression can also feedback to reverse the H19 loss-mediated suppression of BCSC properties. Our data also reveal that LIN28 blocks mature let-7 production and, thereby, de-represses H19 expression in breast cancer cells. Appropriately, H19 and LIN28 expression exhibits strong correlations in primary breast carcinomas. Collectively, these findings reveal that lncRNA H19, miRNA let-7 and transcriptional factor LIN28 form a double-negative feedback loop, which has a critical role in the maintenance of BCSCs. Consequently, disrupting this pathway provides a novel therapeutic strategy for breast cancer.
机译:长的非编码RNA-H19(H19)是一种印迹的癌胚基因,在致癌作用中起着核心作用。迄今为止,H19调节癌症干细胞的机制仍然难以捉摸。在这里,我们显示乳腺癌干细胞(BCSCs)表达高水平的H19,而H19的异位过表达显着促进乳腺癌细胞的克隆形成性,迁移和形成乳球的能力。相反地​​,H19的沉默抑制了这些BCSC特性。一致地,敲除H19可显着抑制裸鼠的肿瘤生长并抑制肿瘤发生。从机制上讲,我们发现H19充当海绵miRNA let-7的竞争内源RNA,导致let-7靶标(核心多能性因子LIN28)的表达增加,该靶标富含BCSC群体和乳腺癌患者样品。有趣的是,LIN28表达的这种增加也可以反馈以逆转H19介导的BCSC特性的抑制。我们的数据还显示LIN28阻断了成熟的let-7的产生,从而降低了乳腺癌细胞中H19的表达。适当地,H19和LIN28表达在原发性乳腺癌中表现出强相关性。这些发现共同表明,lncRNA H19,miRNA let-7和转录因子LIN28形成双负反馈环,这在BCSC的维持中具有关键作用。因此,破坏该途径为乳腺癌提供了一种新颖的治疗策略。

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