Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells

Abstract Background Metformin has been reported to function as the anti-tumor inhibiting the growth of different types of cancers, including bladder cancer. But there are few reports on the roles of Yap1, the key molecule of Hippo pathway, in the metformin induced inhibition of bladder cancer (BLCA)...

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Main Authors: Yanju Wu, Qianqian Zheng, Yan Li, Guang Wang, Shuting Gao, Xiaodong Zhang, Xu Yan, Xinwen Zhang, Jisheng Xie, Yuanyuan Wang, Xun Sun, Xin Meng, Bo Yin, Biao Wang
Format: Article
Language:English
Published: BMC 2019-08-01
Series:Journal of Experimental & Clinical Cancer Research
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13046-019-1346-1
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language English
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sources DOAJ
author Yanju Wu
Qianqian Zheng
Yan Li
Guang Wang
Shuting Gao
Xiaodong Zhang
Xu Yan
Xinwen Zhang
Jisheng Xie
Yuanyuan Wang
Xun Sun
Xin Meng
Bo Yin
Biao Wang
spellingShingle Yanju Wu
Qianqian Zheng
Yan Li
Guang Wang
Shuting Gao
Xiaodong Zhang
Xu Yan
Xinwen Zhang
Jisheng Xie
Yuanyuan Wang
Xun Sun
Xin Meng
Bo Yin
Biao Wang
Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
Journal of Experimental & Clinical Cancer Research
Yes-associated protein 1
Cyclin E
TEAD4
Bladder cancer
Metformin
author_facet Yanju Wu
Qianqian Zheng
Yan Li
Guang Wang
Shuting Gao
Xiaodong Zhang
Xu Yan
Xinwen Zhang
Jisheng Xie
Yuanyuan Wang
Xun Sun
Xin Meng
Bo Yin
Biao Wang
author_sort Yanju Wu
title Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
title_short Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
title_full Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
title_fullStr Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
title_full_unstemmed Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cells
title_sort metformin targets a yap1-tead4 complex via ampkα to regulate ccne1/2 in bladder cancer cells
publisher BMC
series Journal of Experimental & Clinical Cancer Research
issn 1756-9966
publishDate 2019-08-01
description Abstract Background Metformin has been reported to function as the anti-tumor inhibiting the growth of different types of cancers, including bladder cancer. But there are few reports on the roles of Yap1, the key molecule of Hippo pathway, in the metformin induced inhibition of bladder cancer (BLCA). We are wondering if the inhibitory effect of metformin on bladder cancer is fulfilled via Yap1 and exploring the related mechanism. Methods MTS and colony formation assays were used to explore the cellular viabilities and proliferation of BLCA cells challenged by metformin at different concentrations, in vitro. Flow Cytometry (FCM) was used to analyze the cell cycle and the cellular apoptosis of the BLCA cells. Western Blot was performed to detect the expressions of AMPKα, Yap1, CCND1, CCNE1/2 and CDK2/4/6 in the metformin-treated BLCA cell lines. RNAi method was used for the related genetic functional analysis. The relationships among Yap1, TEADs and CCNE1/2 were predicted and evaluated using bioinformatics, dual-luciferase reporter and co-immunoprecipitation (Co-IP) assays. For in vivo experiments, a xenograft model was used to investigate the effects of metformin on the proliferation of BLCA cells. And Immunohistochemistry (IHC) assay was performed to assess the expressions of CCNE1/2 and Yap1 proteins in the tumor tissues from the model. Results Metformin could inhibit the proliferation of the BLCA cells via inducing the G1 cell cycle arrest without apoptosis. And metformin upregulated the phosphorylated AMPKα and decreased the expressions of Yap1 and CCND1, CCNE1/2 and CDK4/6. AMPK inhibition by compound C (CC) restored the cell proliferation and the G1 cell cycle arrest induced by metformin, in vivo. Knockdown of YAP1 inhibited the proliferation of BLCA cells and caused the cell cycle arrest at G1 phase by decreasing the expressions of CCNE1/2 and other G1 phase related molecules, which has been restored by the Yap 5SA mutant. Bioinformatics analysis showed that trans-factor TEAD4 was highly expressed and positively associated with the expressions of CCNE1 and CCNE2 in BLCA and only TEAD4 was precipitated by Yap1 in the BLCA cells. Further studies demonstrated that Yap1 positively regulated both CCNE1 and CCNE2 expressions via forming complex with TEAD4. Furthermore, we observed that metformin inhibited the cell proliferation by decreasing the expressions of Yap1 and both CCNE1 and CCNE2 in xenograft model. Conclusions The results of our study reveal a new potential regulatory pathway in which metformin inhibits cell proliferation via AMPKα/Yap1/TEAD4/CCNE1/2 axis in BLCA cells, providing new insights into novel molecular therapeutic targets for BLCA.
topic Yes-associated protein 1
Cyclin E
TEAD4
Bladder cancer
Metformin
url http://link.springer.com/article/10.1186/s13046-019-1346-1
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spelling doaj-486831f9a88548dcb3eed21f79141e4c2020-11-25T03:01:30ZengBMCJournal of Experimental & Clinical Cancer Research1756-99662019-08-0138111610.1186/s13046-019-1346-1Metformin targets a YAP1-TEAD4 complex via AMPKα to regulate CCNE1/2 in bladder cancer cellsYanju Wu0Qianqian Zheng1Yan Li2Guang Wang3Shuting Gao4Xiaodong Zhang5Xu Yan6Xinwen Zhang7Jisheng Xie8Yuanyuan Wang9Xun Sun10Xin Meng11Bo Yin12Biao Wang13Department of Biochemistry and Molecular Biology, School of Life Sciences, China Medical UniversityDepartment of Pathophysiology, College of Basic Medical Science, China Medical UniversityDepartment of General Surgery, the Fourth Affiliated Hospital of China Medical UniversityDepartment of Laboratory Animal Science, China Medical UniversityDepartment of Biochemistry and Molecular Biology, School of Life Sciences, China Medical UniversityDepartment of General Surgery, the Fourth Affiliated Hospital of China Medical UniversityDepartment, School & Hospital of Stomatology, China Medical UniversityCenter of Implant Dentistry, School & Hospital of Stomatology, China Medical UniversityDepartment of Histology and Embryology, Youjiang Medical College for NationalitiesDepartment of anesthesiology, the Fourth Affiliated Hospital, China Medical UniversityDepartment of Immunology, College of Basic Medical Sciences of China Medical UniversityDepartment of Biochemistry and Molecular Biology, School of Life Sciences, China Medical UniversityDepartment of Urology, ShengJing Hospital of China Medical UniversityDepartment of Biochemistry and Molecular Biology, School of Life Sciences, China Medical UniversityAbstract Background Metformin has been reported to function as the anti-tumor inhibiting the growth of different types of cancers, including bladder cancer. But there are few reports on the roles of Yap1, the key molecule of Hippo pathway, in the metformin induced inhibition of bladder cancer (BLCA). We are wondering if the inhibitory effect of metformin on bladder cancer is fulfilled via Yap1 and exploring the related mechanism. Methods MTS and colony formation assays were used to explore the cellular viabilities and proliferation of BLCA cells challenged by metformin at different concentrations, in vitro. Flow Cytometry (FCM) was used to analyze the cell cycle and the cellular apoptosis of the BLCA cells. Western Blot was performed to detect the expressions of AMPKα, Yap1, CCND1, CCNE1/2 and CDK2/4/6 in the metformin-treated BLCA cell lines. RNAi method was used for the related genetic functional analysis. The relationships among Yap1, TEADs and CCNE1/2 were predicted and evaluated using bioinformatics, dual-luciferase reporter and co-immunoprecipitation (Co-IP) assays. For in vivo experiments, a xenograft model was used to investigate the effects of metformin on the proliferation of BLCA cells. And Immunohistochemistry (IHC) assay was performed to assess the expressions of CCNE1/2 and Yap1 proteins in the tumor tissues from the model. Results Metformin could inhibit the proliferation of the BLCA cells via inducing the G1 cell cycle arrest without apoptosis. And metformin upregulated the phosphorylated AMPKα and decreased the expressions of Yap1 and CCND1, CCNE1/2 and CDK4/6. AMPK inhibition by compound C (CC) restored the cell proliferation and the G1 cell cycle arrest induced by metformin, in vivo. Knockdown of YAP1 inhibited the proliferation of BLCA cells and caused the cell cycle arrest at G1 phase by decreasing the expressions of CCNE1/2 and other G1 phase related molecules, which has been restored by the Yap 5SA mutant. Bioinformatics analysis showed that trans-factor TEAD4 was highly expressed and positively associated with the expressions of CCNE1 and CCNE2 in BLCA and only TEAD4 was precipitated by Yap1 in the BLCA cells. Further studies demonstrated that Yap1 positively regulated both CCNE1 and CCNE2 expressions via forming complex with TEAD4. Furthermore, we observed that metformin inhibited the cell proliferation by decreasing the expressions of Yap1 and both CCNE1 and CCNE2 in xenograft model. Conclusions The results of our study reveal a new potential regulatory pathway in which metformin inhibits cell proliferation via AMPKα/Yap1/TEAD4/CCNE1/2 axis in BLCA cells, providing new insights into novel molecular therapeutic targets for BLCA.http://link.springer.com/article/10.1186/s13046-019-1346-1Yes-associated protein 1Cyclin ETEAD4Bladder cancerMetformin