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自噬促进蛋白 AMBRA1 通过调节 CCND(细胞周期蛋白 D)的稳定性来协调细胞周期进程。

The pro-autophagic protein AMBRA1 coordinates cell cycle progression by regulating CCND (cyclin D) stability.

机构信息

Computational Biology Laboratory, Center for Autophagy, Recycling and Disease (CARD), Danish Cancer Society Research Center, Copenhagen, Denmark.

Department of Pediatric Onco-Hematology and Cell and Gene Therapy, IRCCS Bambino Gesù Children's Hospital, Rome, Italy.

出版信息

Autophagy. 2021 Dec;17(12):4506-4508. doi: 10.1080/15548627.2021.1985917. Epub 2021 Oct 17.

Abstract

The scaffold protein AMBRA1 regulates the early steps of autophagosome formation and cell growth, and its deficiency is associated with neurodevelopmental defects and cancer. In a recent study, we show that AMBRA1 is a key factor in the upstream branch of the MYCN-MYC and CDK4-CDK6-dependent regulation of G/S phase transition. Indeed, in the developing neuroepithelium, in neural stem cells, and in cancer cells, we demonstrate that AMBRA1 regulates the expression of D-type cyclins by controlling both their proteasomal degradation and their MYCN-MYC-mediated transcription. Also, we show that this regulation axis maintains genome integrity during DNA replication, and we identify a possible line of treatment for tumors downregulating AMBRA1 and/or overexpressing CCND1 (cyclin D1), by demonstrating that AMBRA1-depleted cells carry an -loss-specific lethal sensitivity to CHEK1 inhibition. Interestingly, we show that this aspect is specific for AMBRA1 loss, because ATG7 knockdown does not display the same response to CHEK1 inhibitors. Hence, our findings underscore that the AMBRA1-CCND1 pathway represents a novel crucial mechanism of cell cycle regulation, deeply interconnected with genomic stability in development and cancer.

摘要

支架蛋白 AMBRA1 调节自噬体形成和细胞生长的早期步骤,其缺失与神经发育缺陷和癌症有关。在最近的一项研究中,我们表明 AMBRA1 是 MYCN-MYC 和 CDK4-CDK6 依赖性调节 G1/S 期转换的上游分支的关键因素。事实上,在发育中的神经上皮、神经干细胞和癌细胞中,我们证明 AMBRA1 通过控制 D 型细胞周期蛋白的蛋白酶体降解和 MYCN-MYC 介导的转录来调节其表达。此外,我们表明该调节轴在 DNA 复制过程中维持基因组完整性,并且我们通过证明 AMBRA1 耗尽的细胞对 CHEK1 抑制具有特定的 -loss 特异性致死敏感性,来鉴定出一种可能的下调 AMBRA1 和/或过表达 CCND1(细胞周期蛋白 D1)的肿瘤治疗方法。有趣的是,我们表明这一方面是 AMBRA1 缺失的特异性,因为 ATG7 敲低对 CHEK1 抑制剂没有相同的反应。因此,我们的研究结果强调了 AMBRA1-CCND1 途径代表了一种新的细胞周期调控关键机制,与发育和癌症中的基因组稳定性密切相关。

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