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Regulation of autophagy by a beclin 1-targeted microRNA miR-30a in cancer cells

机译:Beclin 1靶向的微小RNA miR-30a在癌细胞中的自噬调控

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摘要

beclin 1, the mammalian homologue of the yeast Atg6, is a key autophagy-promoting gene that plays a critical role in the regulation of cell death and survival of various types of cells. However, recent studies have observed that the expression of beclin 1 is altered in certain diseases including cancers. The causes underlying the aberrant expression of beclin 1 remain largely unknown. We report here that microRNAs (miRNAs), a class of endogenous, 22–24 nucleotide noncoding RNA molecules able to affect stability and translation of mRNA, may represent a previously unrecognized mechanism for regulating beclin 1 expression and autophagy. We demonstrated that beclin 1 is a potential target for miRNA miR-30a, and this miRNA could negatively regulate beclin 1 expression resulting in decreased autophagic activity. Treatment of tumor cells with the miR-30a mimic decreased, and with the antagomir increased, the expression of beclin 1 mRNA and protein. Dual luciferase reporter assay confirmed that the miR-30a binding sequences in the 3′-UTR of beclin 1 contribute to the modulation of beclin 1 expression by miR-30a. Furthermore, inhibition of beclin 1 expression by the miR-30a mimic blunted activation of autophagy induced by rapamycin. Our study of the role of miR-30a in regulating beclin 1 expression and autophagy reveals a novel function for miRNA in a critical cellular event with significant impacts in cancer development, progression and treatment, and in other diseases.
机译:酵母Atg6的哺乳动物同源物beclin 1是关键的自噬促进基因,在调节细胞死亡和各种类型细胞的存活中起着关键作用。然而,最近的研究已经观察到beclin 1的表达在包括癌症在内的某些疾病中发生了改变。 Beclin 1异常表达的根本原因仍然未知。我们在这里报告说,microRNA(miRNA)是一类能够影响mRNA稳定性和翻译的内源性22-24个核苷酸的非编码RNA分子,可能代表了之前无法识别的调节beclin 1表达和自噬的机制。我们证明,beclin 1是miRNA miR-30a的潜在靶标,并且该miRNA可能负调节beclin 1的表达,从而导致自噬活性降低。用miR-30a模拟物治疗肿瘤细胞减少,而随着antagomir处理,beclin 1 mRNA和蛋白质的表达增加。双重荧光素酶报告基因测定证实,beclin 1的3'-UTR中的miR-30a结合序列有助于miR-30a调节beclin 1的表达。此外,通过miR-30a抑制beclin 1的表达抑制了雷帕霉素诱导的自噬的激活。我们对miR-30a在调节beclin 1表达和自噬中的作用的研究揭示了miRNA在关键细胞事件中的新功能,对癌症的发展,进展和治疗以及其他疾病有重大影响。

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