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Sustained expression of miR-26a promotes chromosomal instability and tumorigenesis through regulation of CHFR

机译:miR-26a的持续表达通过调节CHFR促进染色体不稳定性和肿瘤发生

摘要

MicroRNA 26a (miR-26a) reduces cell viability in several cancers, indicating that miR-26a could be used as a therapeutic option in patients. We demonstrate that miR-26a not only inhibits G1-S cell cycle transition and promotes apoptosis, as previously described, but also regulates multiple cell cycle checkpoints. We show that sustained miR-26a over-expression in both breast cancer (BC) cell lines and mouse embryonic fibroblasts (MEFs) induces oversized cells containing either a single-large nucleus or two nuclei, indicating defects in mitosis and cytokinesis. Additionally, we demonstrate that miR-26a induces aneuploidy and centrosome defects and enhances tumorigenesis. Mechanistically, it acts by targeting G1-S transition genes as well as genes involved in mitosis and cytokinesis such as CHFR, LARP1 and YWHAE. Importantly, we show that only the re-expression of CHFR in miR-26a over-expressing cells partially rescues normal mitosis and impairs the tumorigenesis exerted by miR-26a, indicating that CHFR represents an important miR-26a target in the regulation of such phenotypes. We propose that miR-26a delivery might not be a viable therapeutic strategy due to the potential deleterious oncogenic activity of this miRNA.
机译:MicroRNA 26a(miR-26a)降低了几种癌症的细胞生存能力,表明miR-26a可用作患者的治疗选择。我们证明,miR-26a不仅如上所述抑制G1-S细胞周期转变并促进细胞凋亡,而且还调节多个细胞周期检查点。我们显示乳腺癌(BC)细胞系和小鼠胚胎成纤维细胞(MEFs)的持续miR-26a过表达诱导包含单个大核或两个核的超大细胞,表明有丝分裂和胞质分裂的缺陷。此外,我们证明了miR-26a诱导非整倍性和中心体缺陷并增强了肿瘤发生。在机制上,它通过靶向G1-S过渡基因以及涉及有丝分裂和胞质分裂的基因(例如CHFR,LARP1和YWHAE)起作用。重要的是,我们表明只有在过表达miR-26a的细胞中CHFR的重新表达才能部分挽救正常的有丝分裂并损害miR-26a所致的肿瘤发生,这表明CHFR代表了在调节此类表型中的重要miR-26a靶标。 。我们提议,由于该miRNA潜在的有害致癌活性,miR-26a的递送可能不是可行的治疗策略。

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