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首页> 外文期刊>Journal of molecular cell biology >ARF-mediated SUMOylation of Apak antagonizes ubiquitylation and promotes its nucleolar accumulation to inhibit 47S pre-rRNA synthesis.
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ARF-mediated SUMOylation of Apak antagonizes ubiquitylation and promotes its nucleolar accumulation to inhibit 47S pre-rRNA synthesis.

机译:ARF介导的APAK致拮抗泛醌的Sumoylation,促进其核仁积累以抑制47s预rRNA合成。

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摘要

Ribosomes are among the most fundamental molecular machines in all cells, as they are required for protein synthesis. Most structural rRNA components are generated in the nucleolus and assembled into pre-ribosomal particles. Here we show Apak, a previously identified p53 inhibitor, as a novel ribosomal stress response protein. In unstressed cells, Apak is bound to the deSUMOylase SENP1 in the nucleoplasm and targeted for proteasomal degradation by MDM2 ubiquitin ligase. Upon ribosomal stress, SENP1 dissociates from Apak and the tumor suppressor protein ARF couples Ubc9 with Apak to promote Apak SUMOylation on zinc fingers. This results in Apak protein stabilization and translocation to the nucleolus, where Apak inhibits the pre-rRNA synthesis. These findings provide a molecular mechanism whereby ARF coordinates Apak to regulate ribosome biogenesis upon cellular stress.
机译:核糖体是所有细胞中最基的分子机之一,因为蛋白质合成需要它们。 大多数结构RRNA组分在核心中产生并组装成预核糖体颗粒。 在这里,我们展示APAK,一种先前鉴定的P53抑制剂,作为新型核糖体应激反应蛋白。 在不受重复的细胞中,APAK与核状的DeSumoylase SeNP1结合,并靶向MDM2泛素连接酶的蛋白酶体降解。 在核糖体应激后,SeNP1从Apak和肿瘤抑制蛋白ARF夫妻UBC9中解离APAK,以促进锌手指的Apak Sumoylation。 这导致Apak蛋白稳定性和核仁的易位,其中Apak抑制了预rRNA合成。 这些发现提供了一种分子机制,由此ARF坐标APAK以调节细胞应激后的核糖体生物。

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