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SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance

BACKGROUND: Radioresistance is the major cause of cancer treatment failure. Additionally, splicing dysregulation plays critical roles in tumorigenesis. However, the involvement of alternative splicing in resistance of cancer cells to radiotherapy remains elusive. We sought to investigate the key rol...

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Autores principales: Sheng, Junxiu, Zhao, Qingzhi, Zhao, Jinyao, Zhang, Wenjing, Sun, Yu, Qin, Pan, Lv, Yuesheng, Bai, Lu, Yang, Quan, Chen, Lei, Qi, Yangfan, Zhang, Ge, Zhang, Lin, Gu, Chundong, Deng, Xiaoqin, Liu, Han, Meng, Songshu, Gu, Hong, Liu, Quentin, Coulson, Judy M., Li, Xiaoling, Sun, Bing, Wang, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306353/
https://www.ncbi.nlm.nih.gov/pubmed/30429088
http://dx.doi.org/10.1016/j.ebiom.2018.11.007
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author Sheng, Junxiu
Zhao, Qingzhi
Zhao, Jinyao
Zhang, Wenjing
Sun, Yu
Qin, Pan
Lv, Yuesheng
Bai, Lu
Yang, Quan
Chen, Lei
Qi, Yangfan
Zhang, Ge
Zhang, Lin
Gu, Chundong
Deng, Xiaoqin
Liu, Han
Meng, Songshu
Gu, Hong
Liu, Quentin
Coulson, Judy M.
Li, Xiaoling
Sun, Bing
Wang, Yang
author_facet Sheng, Junxiu
Zhao, Qingzhi
Zhao, Jinyao
Zhang, Wenjing
Sun, Yu
Qin, Pan
Lv, Yuesheng
Bai, Lu
Yang, Quan
Chen, Lei
Qi, Yangfan
Zhang, Ge
Zhang, Lin
Gu, Chundong
Deng, Xiaoqin
Liu, Han
Meng, Songshu
Gu, Hong
Liu, Quentin
Coulson, Judy M.
Li, Xiaoling
Sun, Bing
Wang, Yang
author_sort Sheng, Junxiu
collection PubMed
description BACKGROUND: Radioresistance is the major cause of cancer treatment failure. Additionally, splicing dysregulation plays critical roles in tumorigenesis. However, the involvement of alternative splicing in resistance of cancer cells to radiotherapy remains elusive. We sought to investigate the key role of the splicing factor SRSF1 in the radioresistance in lung cancer. METHODS: Lung cancer cell lines, xenograft mice models, and RNA-seq were employed to study the detailed mechanisms of SRSF1 in lung cancer radioresistance. Clinical tumor tissues and TCGA dataset were utilized to determine the expression levels of distinct SRSF1-regulated splicing isoforms. KM-plotter was applied to analyze the survival of cancer patients with various levels of SRSF1-regulated splicing isoforms. FINDINGS: Splicing factors were screened to identify their roles in radioresistance, and SRSF1 was found to be involved in radioresistance in cancer cells. The level of SRSF1 is elevated in irradiation treated lung cancer cells, whereas knockdown of SRSF1 sensitizes cancer cells to irradiation. Mechanistically, SRSF1 modulates various cancer-related splicing events, particularly the splicing of PTPMT1, a PTEN-like mitochondrial phosphatase. Reduced SRSF1 favors the production of short isoforms of PTPMT1 upon irradiation, which in turn promotes phosphorylation of AMPK, thereby inducing DNA double-strand break to sensitize cancer cells to irradiation. Additionally, the level of the short isoform of PTPMT1 is decreased in cancer samples, which is correlated to cancer patients' survival. CONCLUSIONS: Our study provides mechanistic analyses of aberrant splicing in radioresistance in lung cancer cells, and establishes SRSF1 as a potential therapeutic target for sensitization of patients to radiotherapy.
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spelling pubmed-63063532018-12-28 SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance Sheng, Junxiu Zhao, Qingzhi Zhao, Jinyao Zhang, Wenjing Sun, Yu Qin, Pan Lv, Yuesheng Bai, Lu Yang, Quan Chen, Lei Qi, Yangfan Zhang, Ge Zhang, Lin Gu, Chundong Deng, Xiaoqin Liu, Han Meng, Songshu Gu, Hong Liu, Quentin Coulson, Judy M. Li, Xiaoling Sun, Bing Wang, Yang EBioMedicine Research paper BACKGROUND: Radioresistance is the major cause of cancer treatment failure. Additionally, splicing dysregulation plays critical roles in tumorigenesis. However, the involvement of alternative splicing in resistance of cancer cells to radiotherapy remains elusive. We sought to investigate the key role of the splicing factor SRSF1 in the radioresistance in lung cancer. METHODS: Lung cancer cell lines, xenograft mice models, and RNA-seq were employed to study the detailed mechanisms of SRSF1 in lung cancer radioresistance. Clinical tumor tissues and TCGA dataset were utilized to determine the expression levels of distinct SRSF1-regulated splicing isoforms. KM-plotter was applied to analyze the survival of cancer patients with various levels of SRSF1-regulated splicing isoforms. FINDINGS: Splicing factors were screened to identify their roles in radioresistance, and SRSF1 was found to be involved in radioresistance in cancer cells. The level of SRSF1 is elevated in irradiation treated lung cancer cells, whereas knockdown of SRSF1 sensitizes cancer cells to irradiation. Mechanistically, SRSF1 modulates various cancer-related splicing events, particularly the splicing of PTPMT1, a PTEN-like mitochondrial phosphatase. Reduced SRSF1 favors the production of short isoforms of PTPMT1 upon irradiation, which in turn promotes phosphorylation of AMPK, thereby inducing DNA double-strand break to sensitize cancer cells to irradiation. Additionally, the level of the short isoform of PTPMT1 is decreased in cancer samples, which is correlated to cancer patients' survival. CONCLUSIONS: Our study provides mechanistic analyses of aberrant splicing in radioresistance in lung cancer cells, and establishes SRSF1 as a potential therapeutic target for sensitization of patients to radiotherapy. Elsevier 2018-11-11 /pmc/articles/PMC6306353/ /pubmed/30429088 http://dx.doi.org/10.1016/j.ebiom.2018.11.007 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Sheng, Junxiu
Zhao, Qingzhi
Zhao, Jinyao
Zhang, Wenjing
Sun, Yu
Qin, Pan
Lv, Yuesheng
Bai, Lu
Yang, Quan
Chen, Lei
Qi, Yangfan
Zhang, Ge
Zhang, Lin
Gu, Chundong
Deng, Xiaoqin
Liu, Han
Meng, Songshu
Gu, Hong
Liu, Quentin
Coulson, Judy M.
Li, Xiaoling
Sun, Bing
Wang, Yang
SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title_full SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title_fullStr SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title_full_unstemmed SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title_short SRSF1 modulates PTPMT1 alternative splicing to regulate lung cancer cell radioresistance
title_sort srsf1 modulates ptpmt1 alternative splicing to regulate lung cancer cell radioresistance
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306353/
https://www.ncbi.nlm.nih.gov/pubmed/30429088
http://dx.doi.org/10.1016/j.ebiom.2018.11.007
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