Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy

Yunping Lu, Lingyu Li, Hui Chen, Xinying Jing, Min Wang, Lihua Ge, Jing Yang, Min Zhang, Xiaofei Tang Beijing Institute of Dental Research, Beijing Key Laboratory, Beijing Stomatological Hospital & School of Stomatology, Capital Medical University, Beijing 100050, People’s Republic...

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Main Authors: Lu Y, Li L, Chen H, Jing X, Wang M, Ge L, Yang J, Zhang M, Tang X
Format: Article
Language:English
Published: Dove Medical Press 2021-01-01
Series:OncoTargets and Therapy
Subjects:
Online Access:https://www.dovepress.com/peroxiredoxin1-knockdown-inhibits-oral-carcinogenesis-via-inducing-cel-peer-reviewed-article-OTT
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spelling doaj-73c46092d9b347cdb1e8c9d32ae2f26f2021-01-12T22:45:01ZengDove Medical PressOncoTargets and Therapy1178-69302021-01-01Volume 1423925161102Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on MitophagyLu YLi LChen HJing XWang MGe LYang JZhang MTang XYunping Lu, Lingyu Li, Hui Chen, Xinying Jing, Min Wang, Lihua Ge, Jing Yang, Min Zhang, Xiaofei Tang Beijing Institute of Dental Research, Beijing Key Laboratory, Beijing Stomatological Hospital & School of Stomatology, Capital Medical University, Beijing 100050, People’s Republic of ChinaCorrespondence: Xiaofei Tang; Min ZhangDivision of Oral Pathology, Beijing Institute of Dental Research, Beijing Stomatological Hospital & School of Stomatology, Capital Medical University, No. 4 Tiantan Xili, Dongcheng District, Beijing 100050, People’s Republic of ChinaTel +86-10-57099311; +86-10-57099313Fax +86-10-57099313Email xftang10@ccmu.edu.cn; 13691135741@163.comPurpose: Cellular senescence is a physiological phenomenon by which cells irreversibly lose their proliferative potential. It is not clear whether senescent cells are related to malignant transformation in oral precancerous lesions. The role of peroxiredoxin1 (Prx1)-induced cell senescence in OLK malignant transformation has not been reported. The aim of this study is to investigate the role and mechanism of cell senescence in oral carcinogenesis.Methods: In this study, 4-nitro-quinoline-1-oxide (4NQO) induced tongue carcinogenesis model in Prx1+/+ and Prx1+/- mice and dysplastic oral keratinocyte (DOK) were used. Prx1 knockdown DOK cells were harvested with shRNA injection, and cell senescence was detected via the senescence-associated β-galactosidase (SA β-gal) assay. The senescence and mitophagy-related proteins were observed by immunohistochemistry (IHC), Western blot and qRT-PCR. The binding of Prx1 with prohibitin 2 (PHB2) and light chain 3 (LC3) was predicted via ZDOCK and measured in mice by Duolink analysis.Results: Histologically, 4NQO treatment induced epithelial hyperplasia, dysplasia (mild, moderate and severe), carcinomas in situ and oral squamous cell carcinoma (OSCC) in mouse tongue mucosa. The malignant transformation rate in Prx1+/- mice (37.5%) was significantly lower compared with Prx1+/+ mice (57.1%). In Prx1+/+ mice, a higher number of senescent cells and greater expression of p53 and p21 were observed in hyperplastic and dysplastic tongue tissues when compared with those in OSCC tissues. Prx1 knockdown induced a greater number of senescent cells in hyperplastic tissues, and DOK cells accompanied cell cycle arrest at the G1 phase and PHB2/LC3II downregulation. Prx1 was predicted to dock with PHB2 and LC3 via ZDOCK, and the interactions were confirmed by in situ Duolink analysis.Conclusion: Prx1 silencing inhibits the oral carcinogenesis by inducing cell senescence dependent on mitophagy.Keywords: peroxiredoxin1, oral leukoplakia, oral squamous cell carcinoma, cell senescence, mitophagyhttps://www.dovepress.com/peroxiredoxin1-knockdown-inhibits-oral-carcinogenesis-via-inducing-cel-peer-reviewed-article-OTTperoxiredoxin1oral leukoplakiaoral squamous cell carcinomacell senescencemitophagy
collection DOAJ
language English
format Article
sources DOAJ
author Lu Y
Li L
Chen H
Jing X
Wang M
Ge L
Yang J
Zhang M
Tang X
spellingShingle Lu Y
Li L
Chen H
Jing X
Wang M
Ge L
Yang J
Zhang M
Tang X
Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
OncoTargets and Therapy
peroxiredoxin1
oral leukoplakia
oral squamous cell carcinoma
cell senescence
mitophagy
author_facet Lu Y
Li L
Chen H
Jing X
Wang M
Ge L
Yang J
Zhang M
Tang X
author_sort Lu Y
title Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
title_short Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
title_full Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
title_fullStr Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
title_full_unstemmed Peroxiredoxin1 Knockdown Inhibits Oral Carcinogenesis via Inducing Cell Senescence Dependent on Mitophagy
title_sort peroxiredoxin1 knockdown inhibits oral carcinogenesis via inducing cell senescence dependent on mitophagy
publisher Dove Medical Press
series OncoTargets and Therapy
issn 1178-6930
publishDate 2021-01-01
description Yunping Lu, Lingyu Li, Hui Chen, Xinying Jing, Min Wang, Lihua Ge, Jing Yang, Min Zhang, Xiaofei Tang Beijing Institute of Dental Research, Beijing Key Laboratory, Beijing Stomatological Hospital & School of Stomatology, Capital Medical University, Beijing 100050, People’s Republic of ChinaCorrespondence: Xiaofei Tang; Min ZhangDivision of Oral Pathology, Beijing Institute of Dental Research, Beijing Stomatological Hospital & School of Stomatology, Capital Medical University, No. 4 Tiantan Xili, Dongcheng District, Beijing 100050, People’s Republic of ChinaTel +86-10-57099311; +86-10-57099313Fax +86-10-57099313Email xftang10@ccmu.edu.cn; 13691135741@163.comPurpose: Cellular senescence is a physiological phenomenon by which cells irreversibly lose their proliferative potential. It is not clear whether senescent cells are related to malignant transformation in oral precancerous lesions. The role of peroxiredoxin1 (Prx1)-induced cell senescence in OLK malignant transformation has not been reported. The aim of this study is to investigate the role and mechanism of cell senescence in oral carcinogenesis.Methods: In this study, 4-nitro-quinoline-1-oxide (4NQO) induced tongue carcinogenesis model in Prx1+/+ and Prx1+/- mice and dysplastic oral keratinocyte (DOK) were used. Prx1 knockdown DOK cells were harvested with shRNA injection, and cell senescence was detected via the senescence-associated β-galactosidase (SA β-gal) assay. The senescence and mitophagy-related proteins were observed by immunohistochemistry (IHC), Western blot and qRT-PCR. The binding of Prx1 with prohibitin 2 (PHB2) and light chain 3 (LC3) was predicted via ZDOCK and measured in mice by Duolink analysis.Results: Histologically, 4NQO treatment induced epithelial hyperplasia, dysplasia (mild, moderate and severe), carcinomas in situ and oral squamous cell carcinoma (OSCC) in mouse tongue mucosa. The malignant transformation rate in Prx1+/- mice (37.5%) was significantly lower compared with Prx1+/+ mice (57.1%). In Prx1+/+ mice, a higher number of senescent cells and greater expression of p53 and p21 were observed in hyperplastic and dysplastic tongue tissues when compared with those in OSCC tissues. Prx1 knockdown induced a greater number of senescent cells in hyperplastic tissues, and DOK cells accompanied cell cycle arrest at the G1 phase and PHB2/LC3II downregulation. Prx1 was predicted to dock with PHB2 and LC3 via ZDOCK, and the interactions were confirmed by in situ Duolink analysis.Conclusion: Prx1 silencing inhibits the oral carcinogenesis by inducing cell senescence dependent on mitophagy.Keywords: peroxiredoxin1, oral leukoplakia, oral squamous cell carcinoma, cell senescence, mitophagy
topic peroxiredoxin1
oral leukoplakia
oral squamous cell carcinoma
cell senescence
mitophagy
url https://www.dovepress.com/peroxiredoxin1-knockdown-inhibits-oral-carcinogenesis-via-inducing-cel-peer-reviewed-article-OTT
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