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首页> 外文期刊>Molecular biology of the cell >MiR-322/424 and -503 Are Induced during Muscle Differentiation and Promote Cell Cycle Quiescence and Differentiation by Down-Regulation of Cdc25A
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MiR-322/424 and -503 Are Induced during Muscle Differentiation and Promote Cell Cycle Quiescence and Differentiation by Down-Regulation of Cdc25A

机译:MiR-322 / 424和-503在肌肉分化过程中被诱导,并通过下调Cdc25A促进细胞周期的静止和分化。

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摘要

Induction of a G1 phase cell cycle arrest, caused primarily by the inhibition of cyclin-dependent-kinase 2 (cdk2), is a critical step in the differentiation of myoblasts into myotubes. Here, we report that two microRNAs, miR-322/424 and miR-503, are induced and promote cdk2 inhibition during myogenesis. These microRNAs down-regulate Cdc25A, the phosphatase responsible for removing inhibitory phosphorylation of cdk2, both in myoblasts differentiating into myotubes and in nonmuscle cells. Cdc25A is down-regulated during muscle differentiation by multiple pathways: action of these two microRNAs, proteasomal degradation of Cdc25A protein and transcriptional repression. Overexpression of Cdc25A or of cdk2 with mutations on T14 and Y15 (cdk2-AF), so that it cannot be inhibited by phosphorylation, decreases differentiation and differentiation-induced cell cycle quiescence. Introduction of miR-322/424 and miR-503 in heterologous cancer cells induces G1 arrest, which is also attenuated by overexpression of the cdk2-AF mutant. Until now Cdc25A and the inhibitory phosphorylation on T14 and Y15 of cdk2 have only been implicated in the intra-S phase checkpoint pathway after DNA damage. Our results reveal an unexpected role of Cdc25A down-regulation and the inhibitory phosphorylation of cdk2 T14 and Y15 in cell cycle quiescence during muscle differentiation and implicate two muscle differentiation-induced microRNAs in the process.
机译:主要由抑制细胞周期蛋白依赖性激酶2(cdk2)引起的G1期细胞周期停滞的诱导,是成肌细胞分化为肌管的关键步骤。在这里,我们报告两个miRNA,miR-322 / 424和miR-503,被诱导并促进成肌过程中对cdk2的抑制。这些microRNA在分化为肌管的成肌细胞和非肌细胞中均下调Cdc25A(磷酸酶,负责消除cdk2的抑制性磷酸化)。 Cdc25A在肌肉分化过程中通过多种途径下调:这两个microRNA的作用,Cdc25A蛋白的蛋白酶体降解和转录抑制。 Cdc25A或cdk2的过表达,在T14和Y15上有突变(cdk2-AF),因此它不能被磷酸化抑制,减少分化和分化诱导的细胞周期停滞。将miR-322 / 424和miR-503引入异源癌细胞会诱导G1阻滞,而cdk2-AF突变体的过表达也会减弱G1阻滞。到目前为止,Cdc25A和cdk2的T14和Y15的抑制性磷酸化仅与DNA损伤后的S内检查点途径有关。我们的结果揭示了Cdc25A下调以及cdk2 T14和Y15抑制性磷酸化在肌肉分化过程中细胞周期静止中的意外作用,并暗示了该过程中两个肌肉分化诱导的microRNA。

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