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MiR-630 inhibits proliferation by targeting CDC7 kinase, but maintains the apoptotic balance by targeting multiple modulators in human lung cancer A549 cells

机译:MiR-630通过靶向CDC7激酶抑制增殖,但通过靶向人类肺癌A549细胞中的多种调节剂来维持细胞凋亡平衡

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MicroRNAome analyses have shown microRNA-630 (miR-630) to be involved in the regulation of apoptosis. However, its apoptotic role is still debated and its participation in DNA replication is unknown. Here, we demonstrate that miR-630 inhibits cell proliferation by targeting cell-cycle kinase 7 (CDC7) kinase, but maintains the apoptotic balance by targeting multiple activators of apoptosis under genotoxic stress. We identified a novel regulatory mechanism of CDC7 gene expression, in which miR-630 downregulated CDC7 expression by recognizing and binding to four binding sites in CDC7 3'-UTR. We found that miR-630 was highly expressed in A549 and NIH3T3 cells where CDC7 was downregulated, but lower in H1299, MCF7, MDA-MB-231, HeLa and 2BS cells where CDC7 was upregulated. Furthermore, the induction of miR-630 occurred commonly in a variety of human cancer and immortalized cells in response to genotoxic agents. Importantly, downregulation of CDC7 by miR-630 was associated with cisplatin (CIS)-induced inhibitory proliferation in A549 cells. Mechanistically, miR-630 exerted its inhibitory proliferation by blocking CDC7-mediated initiation of DNA synthesis and by inducing G1 arrest, but maintains apoptotic balance under CIS exposure. On the one hand, miR-630 promoted apoptosis by downregulation of CDC7; on the other hand, it reduced apoptosis by downregulating several apoptotic modulators such as PARP3, DDIT4, EP300 and EP300 downstream effector p53, thereby maintaining the apoptotic balance. Our data indicate that miR-630 has a bimodal role in the regulation of apoptosis in response to DNA damage. Our data also support the notion that a certain mRNA can be targeted by several miRNAs, and in particular an miRNA may target a set of mRNAs. These data afford a comprehensive view of microRNA-dependent control of gene expression in the regulation of apoptosis under genotoxic stress.
机译:MicroRNAome分析显示microRNA-630(miR-630)参与细胞凋亡的调控。然而,其凋亡作用仍在争论中,其参与DNA复制尚不清楚。在这里,我们证明了miR-630通过靶向细胞周期激酶7(CDC7)激酶抑制细胞增殖,但通过靶向遗传毒性胁迫下的多种凋亡激活因子来维持细胞凋亡平衡。我们确定了一种新型的CDC7基因表达调控机制,其中miR-630通过识别并结合CDC7 3'-UTR中的四个结合位点来下调CDC7表达。我们发现,miR-630在CDC7被下调的A549和NIH3T3细胞中高表达,而在CDC7被上调的H1299,MCF7,MDA-MB-231,HeLa和2BS细胞中低表达。此外,响应基因毒性剂,miR-630的诱导通常发生在多种人类癌症和永生化细胞中。重要的是,miR-630对CDC7的下调与顺铂(CIS)诱导的A549细胞抑制增殖有关。从机制上讲,miR-630通过阻止CDC7介导的DNA合成启动并诱导G1阻滞而发挥其抑制性增殖作用,但在CIS暴露下仍保持凋亡平衡。一方面,miR-630通过下调CDC7促进细胞凋亡。另一方面,它通过下调几种凋亡调节剂(如PARP3,DDIT4,EP300和EP300下游效应子p53)来减少细胞凋亡,从而保持凋亡平衡。我们的数据表明,miR-630在响应DNA损伤的凋亡调控中具有双峰作用。我们的数据还支持某些miRNA可以靶向某些mRNA的观点,特别是miRNA可以靶向一组mRNA。这些数据提供了在基因毒性胁迫下调控细胞凋亡中基因表达的microRNA依赖性控制的全面视图。

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