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Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner
Metformin, the most widely used drug for type 2 diabetes activates 59 adenosine monophosphate (AMP)-activated protein kinase (AMPK), which regulates cellular energy metabolism. Here, we report that ovarian cell lines VOSE, A2780, CP70, C200, OV202, OVCAR3, SKOV3ip, PE01 and PE04 predominantly expres...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822503/ https://www.ncbi.nlm.nih.gov/pubmed/19874425 http://dx.doi.org/10.1111/j.1582-4934.2009.00954.x |
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author | Rattan, R Giri, S Hartmann, LC Shridhar, V |
author_facet | Rattan, R Giri, S Hartmann, LC Shridhar, V |
author_sort | Rattan, R |
collection | PubMed |
description | Metformin, the most widely used drug for type 2 diabetes activates 59 adenosine monophosphate (AMP)-activated protein kinase (AMPK), which regulates cellular energy metabolism. Here, we report that ovarian cell lines VOSE, A2780, CP70, C200, OV202, OVCAR3, SKOV3ip, PE01 and PE04 predominantly express -α(1), -β(1), -γ(1) and -γ(2) isoforms of AMPK subunits. Our studies show that metformin treatment (1) significantly inhibited proliferation of diverse chemo-responsive and -resistant ovarian cancer cell lines (A2780, CP70, C200, OV202, OVCAR3, SKVO3ip, PE01 and PE04), (2) caused cell cycle arrest accompanied by decreased cyclin D1 and increased p21 protein expression, (3) activated AMPK in various ovarian cancer cell lines as evident from increased phosphorylation of AMPKα and its downstream substrate; acetyl co-carboxylase (ACC) and enhanced β-oxidation of fatty acid and (4) attenuated mTOR-S6RP phosphorylation, inhibited protein translational and lipid biosynthetic pathways, thus implicating metformin as a growth inhibitor of ovarian cancer cells. We also show that metformin-mediated effect on AMPK is dependent on liver kinase B1 (LKB1) as it failed to activate AMPK-ACC pathway and cell cycle arrest in LKB1 null mouse embryo fibroblasts (mefs). This observation was further supported by using siRNA approach to down-regulate LKB1 in ovarian cancer cells. In contrast, met formin inhibited cell proliferation in both wild-type and AMPKα(1/2) null mefs as well as in AMPK silenced ovarian cancer cells. Collectively, these results provide evidence on the role of metformin as an anti-proliferative therapeutic that can act through both AMPK-dependent as well as AMPK-independent pathways. |
format | Online Article Text |
id | pubmed-3822503 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-38225032015-04-06 Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner Rattan, R Giri, S Hartmann, LC Shridhar, V J Cell Mol Med Articles Metformin, the most widely used drug for type 2 diabetes activates 59 adenosine monophosphate (AMP)-activated protein kinase (AMPK), which regulates cellular energy metabolism. Here, we report that ovarian cell lines VOSE, A2780, CP70, C200, OV202, OVCAR3, SKOV3ip, PE01 and PE04 predominantly express -α(1), -β(1), -γ(1) and -γ(2) isoforms of AMPK subunits. Our studies show that metformin treatment (1) significantly inhibited proliferation of diverse chemo-responsive and -resistant ovarian cancer cell lines (A2780, CP70, C200, OV202, OVCAR3, SKVO3ip, PE01 and PE04), (2) caused cell cycle arrest accompanied by decreased cyclin D1 and increased p21 protein expression, (3) activated AMPK in various ovarian cancer cell lines as evident from increased phosphorylation of AMPKα and its downstream substrate; acetyl co-carboxylase (ACC) and enhanced β-oxidation of fatty acid and (4) attenuated mTOR-S6RP phosphorylation, inhibited protein translational and lipid biosynthetic pathways, thus implicating metformin as a growth inhibitor of ovarian cancer cells. We also show that metformin-mediated effect on AMPK is dependent on liver kinase B1 (LKB1) as it failed to activate AMPK-ACC pathway and cell cycle arrest in LKB1 null mouse embryo fibroblasts (mefs). This observation was further supported by using siRNA approach to down-regulate LKB1 in ovarian cancer cells. In contrast, met formin inhibited cell proliferation in both wild-type and AMPKα(1/2) null mefs as well as in AMPK silenced ovarian cancer cells. Collectively, these results provide evidence on the role of metformin as an anti-proliferative therapeutic that can act through both AMPK-dependent as well as AMPK-independent pathways. Blackwell Publishing Ltd 2011-01 2009-10-29 /pmc/articles/PMC3822503/ /pubmed/19874425 http://dx.doi.org/10.1111/j.1582-4934.2009.00954.x Text en © 2011 The Author Journal of Cellular and Molecular Medicine © 2011 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd |
spellingShingle | Articles Rattan, R Giri, S Hartmann, LC Shridhar, V Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title | Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title_full | Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title_fullStr | Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title_full_unstemmed | Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title_short | Metformin attenuates ovarian cancer cell growth in an AMP-kinase dispensable manner |
title_sort | metformin attenuates ovarian cancer cell growth in an amp-kinase dispensable manner |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822503/ https://www.ncbi.nlm.nih.gov/pubmed/19874425 http://dx.doi.org/10.1111/j.1582-4934.2009.00954.x |
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