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UBQLN1 缺乏通过与 RPA1 相互作用介导端粒缩短和特发性肺纤维化。

UBQLN1 deficiency mediates telomere shortening and IPF through interacting with RPA1.

机构信息

MOE Key Laboratory of Gene Function and Regulation, State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

Department of Cardiology, Guangdong Provincial Cardiovascular Institute, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, Guangdong, China.

出版信息

PLoS Genet. 2023 Jul 18;19(7):e1010856. doi: 10.1371/journal.pgen.1010856. eCollection 2023 Jul.

Abstract

Premature telomere shortening is a known factor correlated to idiopathic pulmonary fibrosis (IPF) occurrence, which is a chronic, progressive, age-related disease with high mortality. The etiology of IPF is still unknown. Here, we found that UBQLN1 plays a key role in telomere length maintenance and is potentially relevant to IPF. UBQLN1 involves in DNA replication by interacting with RPA1 and shuttling it off from the replication fork. The deficiency of UBQLN1 retains RPA1 at replication fork, hinders replication and thus causes cell cycle arrest and genome instability. Especially at telomere regions of the genome, where more endogenous replication stress exists because of G rich sequences, UBQLN1 depletion leads to rapid telomere shortening in HeLa cells. It revealed that UBQLN1 depletion also shortens telomere length at mouse lung and accelerates mouse lung fibrosis. In addition, the UBQLN1 expression level in IPF patients is downregulated and correlated to poor prognosis. Altogether, these results uncover a new role of UBQLN1 in ensuring DNA replication and maintaining telomere stability, which may shed light on IPF pathogenesis and prevention.

摘要

端粒缩短是特发性肺纤维化(IPF)发生的一个已知因素,IPF 是一种慢性、进行性、与年龄相关的疾病,死亡率很高。IPF 的病因尚不清楚。在这里,我们发现 UBQLN1 在端粒长度维持中起着关键作用,可能与 IPF 有关。UBQLN1 通过与 RPA1 相互作用并将其从复制叉上运出,参与 DNA 复制。UBQLN1 的缺乏使 RPA1 在复制叉处保留,阻碍了复制,从而导致细胞周期停滞和基因组不稳定。特别是在富含 G 序列的基因组的端粒区域,由于存在更多的内源性复制应激,UBQLN1 耗竭导致 HeLa 细胞中端粒的快速缩短。结果表明,UBQLN1 耗竭也会缩短小鼠肺部的端粒长度并加速小鼠肺部纤维化。此外,IPF 患者的 UBQLN1 表达水平下调,并与预后不良相关。总之,这些结果揭示了 UBQLN1 在确保 DNA 复制和维持端粒稳定性方面的新作用,这可能为 IPF 的发病机制和预防提供新的思路。

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