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miR-483-3p 靶向作用于 CDC25A 减少 CCND-CDK4/6 组装并促进细胞周期停滞。

CDC25A targeting by miR-483-3p decreases CCND-CDK4/6 assembly and contributes to cell cycle arrest.

机构信息

CNRS UMR 7275, IPMC, Physiological Genomics of the Eukaryotes, Valbonne, France.

出版信息

Cell Death Differ. 2013 Jun;20(6):800-11. doi: 10.1038/cdd.2013.5. Epub 2013 Feb 22.

Abstract

Disruption of contact inhibition and serum afflux that occur after a tissue injury activate cell cycle, which then stops when confluence is reached again. Although the events involved in cell cycle entry have been widely documented, those managing cell cycle exit have remained so far ill defined. We have identified that the final stage of wound closure is preceded in keratinocytes by a strong accumulation of miR-483-3p, which acts as a mandatory signal triggering cell cycle arrest when confluence is reached. Blocking miR-483-3p accumulation strongly delays cell cycle exit, maintains cells into a proliferative state and retards their differentiation program. Using two models of cell cycle synchronization (i.e. mechanical injury and serum addition), we show that an ectopic upregulation of miR-483-3p blocks cell cycle progression in early G1 phase. This arrest results from a direct targeting of the CDC25A phosphatase by miR-483-3p, which can be impeded using an anti-miRNA against miR-483-3p or a protector that blocks the complex formation between miR-483-3p and the 3'-untranslated region (UTR) of CDC25A transcript. We show that the miRNA-induced silencing of CDC25A increases the tyrosine phosphorylation status of CDK4/6 cyclin-dependent kinases which, in turn, abolishes CDK4/6 capacity to associate with D-type cyclins. This prevents CDK4/6 kinases' activation, impairs downstream events such as cyclin E stimulation and sequesters cells in early G1. We propose this new regulatory process of cyclin-CDK association as a general mechanism coupling miRNA-mediated CDC25A invalidation to CDK post-transcriptional modifications and cell cycle control.

摘要

组织损伤后发生的接触抑制和血清回流的破坏会激活细胞周期,当再次达到汇合时,细胞周期会停止。尽管细胞周期进入的相关事件已被广泛记录,但细胞周期退出的相关事件至今仍未被明确界定。我们已经发现,在角质形成细胞中,伤口闭合的最后阶段之前,miR-483-3p 会强烈积累,当达到汇合时,miR-483-3p 作为触发细胞周期停滞的强制信号发挥作用。阻断 miR-483-3p 的积累会强烈延迟细胞周期退出,使细胞保持增殖状态,并延缓其分化程序。使用两种细胞周期同步化模型(即机械损伤和血清添加),我们表明,miR-483-3p 的异位上调会阻止早期 G1 期的细胞周期进程。这种阻滞是由 miR-483-3p 对 CDC25A 磷酸酶的直接靶向作用引起的,可使用针对 miR-483-3p 的反义 miRNA 或阻止 miR-483-3p 与 CDC25A 转录物的 3'非翻译区(UTR)形成复合物的保护剂来阻止。我们表明,miRNA 诱导的 CDC25A 沉默增加了 CDK4/6 细胞周期蛋白依赖性激酶的酪氨酸磷酸化状态,这反过来又消除了 CDK4/6 与 D 型细胞周期蛋白结合的能力。这阻止了 CDK4/6 激酶的激活,破坏了下游事件,如细胞周期蛋白 E 的刺激,并将细胞困在早期 G1 期。我们提出这种新的 cyclin-CDK 关联调控过程作为一种普遍机制,将 miRNA 介导的 CDC25A 失效与 CDK 的转录后修饰和细胞周期调控联系起来。

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