The Roles of RNA Helicases in DNA Damage Repair and Tumorigenesis Reveal Precision Therapeutic Strategies

生物 同源重组 DNA修复 癌变 RNA解旋酶A DNA损伤 癌症研究 细胞生物学 解旋酶 癌症 遗传学 基因组不稳定性 计算生物学 DNA 核糖核酸 基因
作者
Jinru Xie,Ming Wen,Jiao Zhang,Zheng Wang,Meng Wang,Yanfang Qiu,Wenchao Zhao,Fang Zhu,Mianfeng Yao,Zhuoxian Rong,Wenfeng Hu,Qian Pei,Xiaoxiang Sun,Jinchen Li,Zhiyong Mao,Lun‐Quan Sun,Rong Tan
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:82 (5): 872-884 被引量:26
标识
DOI:10.1158/0008-5472.can-21-2187
摘要

DEAD-box RNA helicases belong to a large group of RNA-processing factors and play vital roles unwinding RNA helices and in ribosomal RNA biogenesis. Emerging evidence indicates that RNA helicases are associated with genome stability, yet the mechanisms behind this association remain poorly understood. In this study, we performed a comprehensive analysis of RNA helicases using multiplatform proteogenomic databases. More than 50% (28/49) of detected RNA helicases were highly expressed in multiple tumor tissues, and more than 60% (17/28) of tumor-associated members were directly involved in DNA damage repair (DDR). Analysis of repair dynamics revealed that these RNA helicases are engaged in an extensively broad range of DDR pathways. Among these factors is DDX21, which was prominently upregulated in colorectal cancer. The high expression of DDX21 gave rise to frequent chromosome exchange and increased genome fragmentation. Mechanistically, aberrantly high expression of DDX21 triggered inappropriate repair processes by delaying homologous recombination repair and increasing replication stress, leading to genome instability and tumorigenesis. Treatment with distinct chemotherapeutic drugs caused higher lethality to cancer cells with genome fragility induced by DDX21, providing a perspective for treatment of tumors with high DDX21 expression. This study revealed the role of RNA helicases in DNA damage and their associations with cancer, which could expand therapeutic strategies and improve precision treatments for cancer patients with high expression of RNA helicases.The involvement of the majority of tumor-associated RNA helicases in the DNA damage repair process suggests a new mechanism of tumorigenesis and offers potential alternative therapeutic strategies for cancer.
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