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RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer

OBJECTIVE: RECQL4 (a member of the RECQ helicase family) upregulation has been reported to be associated with tumor progression in several malignancies. However, whether RECQL4 sustains esophageal squamous cell carcinoma (ESCC) has not been elucidated. In this study, we determined the functional rol...

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Autores principales: Lyu, Guosheng, Su, Peng, Hao, Xiaohe, Chen, Shiming, Ren, Shuai, Zhao, Zixiao, Gong, Yaoqin, Liu, Qiao, Shao, Changshun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Compuscript 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7877169/
https://www.ncbi.nlm.nih.gov/pubmed/33628589
http://dx.doi.org/10.20892/j.issn.2095-3941.2020.0105
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author Lyu, Guosheng
Su, Peng
Hao, Xiaohe
Chen, Shiming
Ren, Shuai
Zhao, Zixiao
Gong, Yaoqin
Liu, Qiao
Shao, Changshun
author_facet Lyu, Guosheng
Su, Peng
Hao, Xiaohe
Chen, Shiming
Ren, Shuai
Zhao, Zixiao
Gong, Yaoqin
Liu, Qiao
Shao, Changshun
author_sort Lyu, Guosheng
collection PubMed
description OBJECTIVE: RECQL4 (a member of the RECQ helicase family) upregulation has been reported to be associated with tumor progression in several malignancies. However, whether RECQL4 sustains esophageal squamous cell carcinoma (ESCC) has not been elucidated. In this study, we determined the functional role for RECQL4 in ESCC progression. METHODS: RECQL4 expression in clinical samples of ESCC was examined by immunohistochemistry. Cell proliferation, cellular senescence, the epithelial-mesenchymal transition (EMT), DNA damage, and reactive oxygen species in ESCC cell lines with RECQL4 depletion or overexpression were analyzed. The levels of proteins involved in the DNA damage response (DDR), cell cycle progression, survival, and the EMT were determined by Western blot analyses. RESULTS: RECQL4 was highly expressed in tumor tissues when compared to adjacent non-tumor tissues in ESCC (P < 0.001) and positively correlated with poor differentiation (P = 0.011), enhanced invasion (P = 0.033), and metastasis (P = 0.048). RECQL4 was positively associated with proliferation and migration in ESCC cells. Depletion of RECQL4 also inhibited growth of tumor xenografts in vivo. RECQL4 depletion induced G0/G1 phase arrest and cellular senescence. Importantly, the levels of DNA damage and reactive oxygen species were increased when RECQL4 was depleted. DDR, as measured by the activation of ATM, ATR, CHK1, and CHK2, was impaired. RECQL4 was also shown to promote the activation of AKT, ERK, and NF-kB in ESCC cells. CONCLUSIONS: The results indicated that RECQL4 was highly expressed in ESCC and played critical roles in the regulation of DDR, redox homeostasis, and cell survival.
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spelling pubmed-78771692021-02-23 RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer Lyu, Guosheng Su, Peng Hao, Xiaohe Chen, Shiming Ren, Shuai Zhao, Zixiao Gong, Yaoqin Liu, Qiao Shao, Changshun Cancer Biol Med Original Article OBJECTIVE: RECQL4 (a member of the RECQ helicase family) upregulation has been reported to be associated with tumor progression in several malignancies. However, whether RECQL4 sustains esophageal squamous cell carcinoma (ESCC) has not been elucidated. In this study, we determined the functional role for RECQL4 in ESCC progression. METHODS: RECQL4 expression in clinical samples of ESCC was examined by immunohistochemistry. Cell proliferation, cellular senescence, the epithelial-mesenchymal transition (EMT), DNA damage, and reactive oxygen species in ESCC cell lines with RECQL4 depletion or overexpression were analyzed. The levels of proteins involved in the DNA damage response (DDR), cell cycle progression, survival, and the EMT were determined by Western blot analyses. RESULTS: RECQL4 was highly expressed in tumor tissues when compared to adjacent non-tumor tissues in ESCC (P < 0.001) and positively correlated with poor differentiation (P = 0.011), enhanced invasion (P = 0.033), and metastasis (P = 0.048). RECQL4 was positively associated with proliferation and migration in ESCC cells. Depletion of RECQL4 also inhibited growth of tumor xenografts in vivo. RECQL4 depletion induced G0/G1 phase arrest and cellular senescence. Importantly, the levels of DNA damage and reactive oxygen species were increased when RECQL4 was depleted. DDR, as measured by the activation of ATM, ATR, CHK1, and CHK2, was impaired. RECQL4 was also shown to promote the activation of AKT, ERK, and NF-kB in ESCC cells. CONCLUSIONS: The results indicated that RECQL4 was highly expressed in ESCC and played critical roles in the regulation of DDR, redox homeostasis, and cell survival. Compuscript 2021-02-15 2021-02-15 /pmc/articles/PMC7877169/ /pubmed/33628589 http://dx.doi.org/10.20892/j.issn.2095-3941.2020.0105 Text en Copyright: © 2021, Cancer Biology & Medicine https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY) 4.0 (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.
spellingShingle Original Article
Lyu, Guosheng
Su, Peng
Hao, Xiaohe
Chen, Shiming
Ren, Shuai
Zhao, Zixiao
Gong, Yaoqin
Liu, Qiao
Shao, Changshun
RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title_full RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title_fullStr RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title_full_unstemmed RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title_short RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
title_sort recql4 regulates dna damage response and redox homeostasis in esophageal cancer
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7877169/
https://www.ncbi.nlm.nih.gov/pubmed/33628589
http://dx.doi.org/10.20892/j.issn.2095-3941.2020.0105
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