4.7 Article

RECQ1 Promotes Stress Resistance and DNA Replication Progression Through PARP1 Signaling Pathway in Glioblastoma

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.714868

关键词

genomic stability; drug resistance; DNA replication stress; fork reversal; RECQ1; PARP1

资金

  1. Key Discipline Construction Project of Pudong Health Bureau of Shanghai [PWZxk2017-23]
  2. Outstanding Leaders Training Program of Pudong Health Bureau of Shanghai [PWR12018-07]
  3. Top-Level Clinical Discipline Project of Shanghai Pudong [PWYgf2018-05]

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The protective role of RECQ1 in DNA replication forks in GBM cells helps to maintain genomic stability and enhance replication stress resistance, providing new insights into overcoming therapy resistance in GBM.
Glioblastoma (GBM) is the most common aggressive primary malignant brain tumor, and patients with GBM have a median survival of 20 months. Clinical therapy resistance is a challenging barrier to overcome. Tumor genome stability maintenance during DNA replication, especially the ability to respond to replication stress, is highly correlated with drug resistance. Recently, we identified a protective role for RECQ1 under replication stress conditions. RECQ1 acts at replication forks, binds PCNA, inhibits single-strand DNA formation and nascent strand degradation in GBM cells. It is associated with the function of the PARP1 protein, promoting PARP1 recruitment to replication sites. RECQ1 is essential for DNA replication fork protection and tumor cell proliferation under replication stress conditions, and as a target of RECQ1, PARP1 effectively protects and restarts stalled replication forks, providing new insights into genomic stability maintenance and replication stress resistance. These findings indicate that tumor genome stability targeting RECQ1-PARP1 signaling may be a promising therapeutic intervention to overcome therapy resistance in GBM.

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