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PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells

Dysfunctional clock signaling is observed in a variety of pathological conditions. Many members of the clock gene family are upregulated in tumor cells. Here, we explored the consequences of a commonly disrupted signaling pathway in head and neck cancer on the regulation of circadian clock genes. PT...

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Autores principales: Matsumoto, Camila S., Almeida, Luciana O., Guimarães, Douglas M., Martins, Manoela D., Papagerakis, Petros, Papagerakis, Silvana, Leopoldino, Andreia M., Castilho, Rogerio M., Squarize, Cristiane H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5173143/
https://www.ncbi.nlm.nih.gov/pubmed/27285754
http://dx.doi.org/10.18632/oncotarget.9877
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author Matsumoto, Camila S.
Almeida, Luciana O.
Guimarães, Douglas M.
Martins, Manoela D.
Papagerakis, Petros
Papagerakis, Silvana
Leopoldino, Andreia M.
Castilho, Rogerio M.
Squarize, Cristiane H.
author_facet Matsumoto, Camila S.
Almeida, Luciana O.
Guimarães, Douglas M.
Martins, Manoela D.
Papagerakis, Petros
Papagerakis, Silvana
Leopoldino, Andreia M.
Castilho, Rogerio M.
Squarize, Cristiane H.
author_sort Matsumoto, Camila S.
collection PubMed
description Dysfunctional clock signaling is observed in a variety of pathological conditions. Many members of the clock gene family are upregulated in tumor cells. Here, we explored the consequences of a commonly disrupted signaling pathway in head and neck cancer on the regulation of circadian clock genes. PTEN is a key molecular controller of the PI3K signaling, and loss of PTEN function is often observed in a variety of cancers. Our main goal was to determine whether PTEN regulates circadian clock signaling. We found that oxidation-driven loss of PTEN function resulted in the activation of mTOR signaling and activation of the core clock protein BMAL1 (also known as ARNTL). The PTEN-induced BMAL1 upregulation was further confirmed using small interference RNA targeting PTEN, and in vivo conditional depletion of PTEN from the epidermis. We observed that PTEN-driven accumulation of BMAL1 was mTOR-mediated and that administration of Rapamycin, a specific mTOR inhibitor, resulted in in vivo rescue of normal levels of BMAL1. Accumulation of BMAL1 by deletion of PER2, a Period family gene, was also rescued upon in vivo administration of mTOR inhibitor. Notably, BMAL1 regulation requires mTOR regulatory protein Raptor and Rictor. These findings indicate that mTORC1 and mTORC2 complex plays a critical role in controlling BMAL1, establishing a connection between PI3K signaling and the regulation of circadian rhythm, ultimately resulting in deregulated BMAL1 in tumor cells with disrupted PI3K signaling.
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spelling pubmed-51731432016-12-23 PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells Matsumoto, Camila S. Almeida, Luciana O. Guimarães, Douglas M. Martins, Manoela D. Papagerakis, Petros Papagerakis, Silvana Leopoldino, Andreia M. Castilho, Rogerio M. Squarize, Cristiane H. Oncotarget Research Paper Dysfunctional clock signaling is observed in a variety of pathological conditions. Many members of the clock gene family are upregulated in tumor cells. Here, we explored the consequences of a commonly disrupted signaling pathway in head and neck cancer on the regulation of circadian clock genes. PTEN is a key molecular controller of the PI3K signaling, and loss of PTEN function is often observed in a variety of cancers. Our main goal was to determine whether PTEN regulates circadian clock signaling. We found that oxidation-driven loss of PTEN function resulted in the activation of mTOR signaling and activation of the core clock protein BMAL1 (also known as ARNTL). The PTEN-induced BMAL1 upregulation was further confirmed using small interference RNA targeting PTEN, and in vivo conditional depletion of PTEN from the epidermis. We observed that PTEN-driven accumulation of BMAL1 was mTOR-mediated and that administration of Rapamycin, a specific mTOR inhibitor, resulted in in vivo rescue of normal levels of BMAL1. Accumulation of BMAL1 by deletion of PER2, a Period family gene, was also rescued upon in vivo administration of mTOR inhibitor. Notably, BMAL1 regulation requires mTOR regulatory protein Raptor and Rictor. These findings indicate that mTORC1 and mTORC2 complex plays a critical role in controlling BMAL1, establishing a connection between PI3K signaling and the regulation of circadian rhythm, ultimately resulting in deregulated BMAL1 in tumor cells with disrupted PI3K signaling. Impact Journals LLC 2016-06-07 /pmc/articles/PMC5173143/ /pubmed/27285754 http://dx.doi.org/10.18632/oncotarget.9877 Text en Copyright: © 2016 Matsumoto et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Matsumoto, Camila S.
Almeida, Luciana O.
Guimarães, Douglas M.
Martins, Manoela D.
Papagerakis, Petros
Papagerakis, Silvana
Leopoldino, Andreia M.
Castilho, Rogerio M.
Squarize, Cristiane H.
PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title_full PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title_fullStr PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title_full_unstemmed PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title_short PI3K-PTEN dysregulation leads to mTOR-driven upregulation of the core clock gene BMAL1 in normal and malignant epithelial cells
title_sort pi3k-pten dysregulation leads to mtor-driven upregulation of the core clock gene bmal1 in normal and malignant epithelial cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5173143/
https://www.ncbi.nlm.nih.gov/pubmed/27285754
http://dx.doi.org/10.18632/oncotarget.9877
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