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Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase

BACKGROUND: Cellular quiescence is a state of reversible proliferation arrest that is induced by anti-mitogenic signals. The endogenous cardiac glycoside ouabain is a specific ligand of the ubiquitous sodium pump, Na,K-ATPase, also known to regulate cell growth through unknown signalling pathways. M...

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Autores principales: Hiyoshi, H, Abdelhady, S, Segerström, L, Sveinbjörnsson, B, Nuriya, M, Lundgren, T K, Desfrere, L, Miyakawa, A, Yasui, M, Kogner, P, Johnsen, J I, Andäng, M, Uhlén, P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3364115/
https://www.ncbi.nlm.nih.gov/pubmed/22531632
http://dx.doi.org/10.1038/bjc.2012.159
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author Hiyoshi, H
Abdelhady, S
Segerström, L
Sveinbjörnsson, B
Nuriya, M
Lundgren, T K
Desfrere, L
Miyakawa, A
Yasui, M
Kogner, P
Johnsen, J I
Andäng, M
Uhlén, P
author_facet Hiyoshi, H
Abdelhady, S
Segerström, L
Sveinbjörnsson, B
Nuriya, M
Lundgren, T K
Desfrere, L
Miyakawa, A
Yasui, M
Kogner, P
Johnsen, J I
Andäng, M
Uhlén, P
author_sort Hiyoshi, H
collection PubMed
description BACKGROUND: Cellular quiescence is a state of reversible proliferation arrest that is induced by anti-mitogenic signals. The endogenous cardiac glycoside ouabain is a specific ligand of the ubiquitous sodium pump, Na,K-ATPase, also known to regulate cell growth through unknown signalling pathways. METHODS: To investigate the role of ouabain/Na,K-ATPase in uncontrolled neuroblastoma growth we used xenografts, flow cytometry, immunostaining, comet assay, real-time PCR, and electrophysiology after various treatment strategies. RESULTS: The ouabain/Na,K-ATPase complex induced quiescence in malignant neuroblastoma. Tumour growth was reduced by >50% when neuroblastoma cells were xenografted into immune-deficient mice that were fed with ouabain. Ouabain-induced S-G2 phase arrest, activated the DNA-damage response (DDR) pathway marker γH2AX, increased the cell cycle regulator p21(Waf1/Cip1) and upregulated the quiescence-specific transcription factor hairy and enhancer of split1 (HES1), causing neuroblastoma cells to ultimately enter G0. Cells re-entered the cell cycle and resumed proliferation, without showing DNA damage, when ouabain was removed. CONCLUSION: These findings demonstrate a novel action of ouabain/Na,K-ATPase as a regulator of quiescence in neuroblastoma, suggesting that ouabain can be used in chemotherapies to suppress tumour growth and/or arrest cells to increase the therapeutic index in combination therapies.
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spelling pubmed-33641152012-05-31 Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase Hiyoshi, H Abdelhady, S Segerström, L Sveinbjörnsson, B Nuriya, M Lundgren, T K Desfrere, L Miyakawa, A Yasui, M Kogner, P Johnsen, J I Andäng, M Uhlén, P Br J Cancer Molecular Diagnostics BACKGROUND: Cellular quiescence is a state of reversible proliferation arrest that is induced by anti-mitogenic signals. The endogenous cardiac glycoside ouabain is a specific ligand of the ubiquitous sodium pump, Na,K-ATPase, also known to regulate cell growth through unknown signalling pathways. METHODS: To investigate the role of ouabain/Na,K-ATPase in uncontrolled neuroblastoma growth we used xenografts, flow cytometry, immunostaining, comet assay, real-time PCR, and electrophysiology after various treatment strategies. RESULTS: The ouabain/Na,K-ATPase complex induced quiescence in malignant neuroblastoma. Tumour growth was reduced by >50% when neuroblastoma cells were xenografted into immune-deficient mice that were fed with ouabain. Ouabain-induced S-G2 phase arrest, activated the DNA-damage response (DDR) pathway marker γH2AX, increased the cell cycle regulator p21(Waf1/Cip1) and upregulated the quiescence-specific transcription factor hairy and enhancer of split1 (HES1), causing neuroblastoma cells to ultimately enter G0. Cells re-entered the cell cycle and resumed proliferation, without showing DNA damage, when ouabain was removed. CONCLUSION: These findings demonstrate a novel action of ouabain/Na,K-ATPase as a regulator of quiescence in neuroblastoma, suggesting that ouabain can be used in chemotherapies to suppress tumour growth and/or arrest cells to increase the therapeutic index in combination therapies. Nature Publishing Group 2012-05-22 2012-04-24 /pmc/articles/PMC3364115/ /pubmed/22531632 http://dx.doi.org/10.1038/bjc.2012.159 Text en Copyright © 2012 Cancer Research UK https://creativecommons.org/licenses/by-nc-sa/3.0/This work is licensed under the Creative Commons Attribution-NonCommercial-Share Alike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Molecular Diagnostics
Hiyoshi, H
Abdelhady, S
Segerström, L
Sveinbjörnsson, B
Nuriya, M
Lundgren, T K
Desfrere, L
Miyakawa, A
Yasui, M
Kogner, P
Johnsen, J I
Andäng, M
Uhlén, P
Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title_full Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title_fullStr Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title_full_unstemmed Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title_short Quiescence and γH2AX in neuroblastoma are regulated by ouabain/Na,K-ATPase
title_sort quiescence and γh2ax in neuroblastoma are regulated by ouabain/na,k-atpase
topic Molecular Diagnostics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3364115/
https://www.ncbi.nlm.nih.gov/pubmed/22531632
http://dx.doi.org/10.1038/bjc.2012.159
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