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MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway

Molecule interacting with CasL 1 (MICAL1) is a multidomain flavoprotein mono‐oxygenase that strongly involves in cytoskeleton dynamics and cell oxidoreduction metabolism. Recently, results from our laboratory have shown that MICAL1 modulates reactive oxygen species (ROS) production, and the latter t...

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Autores principales: Deng, Wenjie, Wang, Yueyuan, Zhao, Shuo, Zhang, Yujie, Chen, Yan, Zhao, Xuyang, Liu, Lei, Sun, Shixiu, Zhang, Lin, Ye, Bixing, Du, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5980113/
https://www.ncbi.nlm.nih.gov/pubmed/29524295
http://dx.doi.org/10.1111/jcmm.13588
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author Deng, Wenjie
Wang, Yueyuan
Zhao, Shuo
Zhang, Yujie
Chen, Yan
Zhao, Xuyang
Liu, Lei
Sun, Shixiu
Zhang, Lin
Ye, Bixing
Du, Jun
author_facet Deng, Wenjie
Wang, Yueyuan
Zhao, Shuo
Zhang, Yujie
Chen, Yan
Zhao, Xuyang
Liu, Lei
Sun, Shixiu
Zhang, Lin
Ye, Bixing
Du, Jun
author_sort Deng, Wenjie
collection PubMed
description Molecule interacting with CasL 1 (MICAL1) is a multidomain flavoprotein mono‐oxygenase that strongly involves in cytoskeleton dynamics and cell oxidoreduction metabolism. Recently, results from our laboratory have shown that MICAL1 modulates reactive oxygen species (ROS) production, and the latter then activates phosphatidyl inositol 3‐kinase (PI3K)/protein kinase B (Akt) signalling pathway which regulates breast cancer cell invasion. Herein, we performed this study to assess the involvement of MICAL1 in breast cancer cell proliferation and to explore the potential molecular mechanism. We noticed that depletion of MICAL1 markedly reduced cell proliferation in breast cancer cell line MCF‐7 and T47D. This effect of MICAL1 on proliferation was independent of wnt/β‐catenin and NF‐κB pathways. Interestingly, depletion of MICAL1 significantly inhibited ROS production, decreased p‐ERK expression and unfavourable for proliferative phenotype of breast cancer cells. Likewise, MICAL1 overexpression increased p‐ERK level as well as p‐ERK nucleus translocation. Moreover, we investigated the effect of MICAL1 on cell cycle‐related proteins. MICAL1 positively regulated CDK4 and cyclin D expression, but not CDK2, CDK6, cyclin A and cyclin E. In addition, more expression of CDK4 and cyclin D by MICAL1 overexpression was blocked by PI3K/Akt inhibitor LY294002. LY294002 treatment also attenuated the increase in the p‐ERK level in MICAL1‐overexpressed breast cancer cells. Together, our results suggest that MICAL1 exhibits its effect on proliferation via maintaining cyclin D expression through ROS‐sensitive PI3K/Akt/ERK signalling in breast cancer cells.
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spelling pubmed-59801132018-06-07 MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway Deng, Wenjie Wang, Yueyuan Zhao, Shuo Zhang, Yujie Chen, Yan Zhao, Xuyang Liu, Lei Sun, Shixiu Zhang, Lin Ye, Bixing Du, Jun J Cell Mol Med Original Articles Molecule interacting with CasL 1 (MICAL1) is a multidomain flavoprotein mono‐oxygenase that strongly involves in cytoskeleton dynamics and cell oxidoreduction metabolism. Recently, results from our laboratory have shown that MICAL1 modulates reactive oxygen species (ROS) production, and the latter then activates phosphatidyl inositol 3‐kinase (PI3K)/protein kinase B (Akt) signalling pathway which regulates breast cancer cell invasion. Herein, we performed this study to assess the involvement of MICAL1 in breast cancer cell proliferation and to explore the potential molecular mechanism. We noticed that depletion of MICAL1 markedly reduced cell proliferation in breast cancer cell line MCF‐7 and T47D. This effect of MICAL1 on proliferation was independent of wnt/β‐catenin and NF‐κB pathways. Interestingly, depletion of MICAL1 significantly inhibited ROS production, decreased p‐ERK expression and unfavourable for proliferative phenotype of breast cancer cells. Likewise, MICAL1 overexpression increased p‐ERK level as well as p‐ERK nucleus translocation. Moreover, we investigated the effect of MICAL1 on cell cycle‐related proteins. MICAL1 positively regulated CDK4 and cyclin D expression, but not CDK2, CDK6, cyclin A and cyclin E. In addition, more expression of CDK4 and cyclin D by MICAL1 overexpression was blocked by PI3K/Akt inhibitor LY294002. LY294002 treatment also attenuated the increase in the p‐ERK level in MICAL1‐overexpressed breast cancer cells. Together, our results suggest that MICAL1 exhibits its effect on proliferation via maintaining cyclin D expression through ROS‐sensitive PI3K/Akt/ERK signalling in breast cancer cells. John Wiley and Sons Inc. 2018-03-10 2018-06 /pmc/articles/PMC5980113/ /pubmed/29524295 http://dx.doi.org/10.1111/jcmm.13588 Text en © 2018 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Deng, Wenjie
Wang, Yueyuan
Zhao, Shuo
Zhang, Yujie
Chen, Yan
Zhao, Xuyang
Liu, Lei
Sun, Shixiu
Zhang, Lin
Ye, Bixing
Du, Jun
MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title_full MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title_fullStr MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title_full_unstemmed MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title_short MICAL1 facilitates breast cancer cell proliferation via ROS‐sensitive ERK/cyclin D pathway
title_sort mical1 facilitates breast cancer cell proliferation via ros‐sensitive erk/cyclin d pathway
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5980113/
https://www.ncbi.nlm.nih.gov/pubmed/29524295
http://dx.doi.org/10.1111/jcmm.13588
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