The DNA / RNA Helicase SETX Maintains R‐Loop Homeostasis to Promote Chemoresistance in Ovarian Cancer

Ovarian cancer is a lethal malignancy that frequently develops resistance to platinum-based chemotherapies. Elucidating the genes that regulate DNA damage repair could lead to more effective treatments for ovarian cancer. Senataxin (SETX), an RNA-DNA helicase, maintains R-loop homeostasis to ensure replication fork progression, and its deficiency is linked to neurodegenerative diseases. However, its clinical relevance to solid tumors is not understood. We aimed to investigate the clinical significance and functional role of SETX in ovarian cancer progression and chemotherapy resistance. SETX expression was analyzed in ovarian cancer tissues, followed by CRISPR-Cas9-mediated knockout, mechanistic analyses, and RNASEH1 rescue experiments to investigate its role in ovarian cancer progression and chemoresistance. SETX was significantly overexpressed in ovarian tumors, and its high expression was correlated with cisplatin resistance and poor patient survival. SETX depletion significantly impaired tumor cell proliferation and invasion and sensitized cells to cisplatin-induced apoptosis. Mechanistically, SETX deficiency triggered pathological R-loop accumulation, which was accompanied by replication stress, DNA double-strand breaks, and activation of DNA damage response. RNA-seq analysis also revealed splicing alterations and U2AF1 interaction. Critically, R-loop degradation induced by RNASEH1 overexpression rescued the DNA damage phenotype and growth defects induced by SETX loss. These findings reveal a dual oncogenic role for SETX. Maintaining R-loop homeostasis supports malignant progression while conferring chemotherapy resistance. Therefore, SETX represents a promising therapeutic target, as its inhibition simultaneously suppresses tumor growth and overcomes chemotherapy resistance in ovarian cancer.

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Publication Details

Journal
Cancer Science
Published
2026-09-09
DOI
https://doi.org/10.1111/cas.70520
Primary Topic
RNA Research and Splicing
Type
article
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article

The DNA / RNA Helicase SETX Maintains R‐Loop Homeostasis to Promote Chemoresistance in Ovarian Cancer

Er-Suo Jin, Tu-Nan Xu, Shuqun Cheng, Xiaomin Wang et al.
Cancer Science
RNA Research and Splicing
article

The DNA / RNA Helicase SETX Maintains R‐Loop Homeostasis to Promote Chemoresistance in Ovarian Cancer

Er-Suo Jin, Tu-Nan Xu, Shuqun Cheng, Xiaomin Wang, Ziwei Hu, Xuan Che, Zha‐Jun Zhan, Ziying Wang, Ming Ren, Xiao‐Min Yang, Xin Zheng, Wei‐Wei Pan, Duan‐Yong Feng, Xian‐Chao Zhang
article en

Abstract

Ovarian cancer is a lethal malignancy that frequently develops resistance to platinum-based chemotherapies. Elucidating the genes that regulate DNA damage repair could lead to more effective treatments for ovarian cancer. Senataxin (SETX), an RNA-DNA helicase, maintains R-loop homeostasis to ensure replication fork progression, and its deficiency is linked to neurodegenerative diseases. However, its clinical relevance to solid tumors is not understood. We aimed to investigate the clinical significance and functional role of SETX in ovarian cancer progression and chemotherapy resistance. SETX expression was analyzed in ovarian cancer tissues, followed by CRISPR-Cas9-mediated knockout, mechanistic analyses, and RNASEH1 rescue experiments to investigate its role in ovarian cancer progression and chemoresistance. SETX was significantly overexpressed in ovarian tumors, and its high expression was correlated with cisplatin resistance and poor patient survival. SETX depletion significantly impaired tumor cell proliferation and invasion and sensitized cells to cisplatin-induced apoptosis. Mechanistically, SETX deficiency triggered pathological R-loop accumulation, which was accompanied by replication stress, DNA double-strand breaks, and activation of DNA damage response. RNA-seq analysis also revealed splicing alterations and U2AF1 interaction. Critically, R-loop degradation induced by RNASEH1 overexpression rescued the DNA damage phenotype and growth defects induced by SETX loss. These findings reveal a dual oncogenic role for SETX. Maintaining R-loop homeostasis supports malignant progression while conferring chemotherapy resistance. Therefore, SETX represents a promising therapeutic target, as its inhibition simultaneously suppresses tumor growth and overcomes chemotherapy resistance in ovarian cancer.

Cancer Science
Ministry of Education (NZ), Zhejiang Sci-Tech University (CN), Second Military Medical University (CN), Jiaxing University (CN), Eastern Hepatobiliary Surgery Hospital (CN), First Hospital of Jiaxing (CN)
Good health and well-being
Openalex Percentile: Top 18%
RNA Research and Splicing
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