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Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction

MicroRNAs (miRNAs) function to modulate gene expression, and through this property they regulate a broad spectrum of cellular processes. They can circulate in blood and thereby mediate cell-to-cell communication. Aging involves changes in many cellular processes that are potentially regulated by miR...

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Autores principales: Dhahbi, Joseph M, Spindler, Stephen R, Atamna, Hani, Yamakawa, Amy, Guerrero, Noel, Boffelli, Dario, Mote, Patricia, Martin, David IK
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616200/
https://www.ncbi.nlm.nih.gov/pubmed/23470454
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author Dhahbi, Joseph M
Spindler, Stephen R
Atamna, Hani
Yamakawa, Amy
Guerrero, Noel
Boffelli, Dario
Mote, Patricia
Martin, David IK
author_facet Dhahbi, Joseph M
Spindler, Stephen R
Atamna, Hani
Yamakawa, Amy
Guerrero, Noel
Boffelli, Dario
Mote, Patricia
Martin, David IK
author_sort Dhahbi, Joseph M
collection PubMed
description MicroRNAs (miRNAs) function to modulate gene expression, and through this property they regulate a broad spectrum of cellular processes. They can circulate in blood and thereby mediate cell-to-cell communication. Aging involves changes in many cellular processes that are potentially regulated by miRNAs, and some evidence has implicated circulating miRNAs in the aging process. In order to initiate a comprehensive assessment of the role of circulating miRNAs in aging, we have used deep sequencing to characterize circulating miRNAs in the serum of young mice, old mice, and old mice maintained on calorie restriction (CR). Deep sequencing identifies a set of novel miRNAs, and also accurately measures all known miRNAs present in serum. This analysis demonstrates that the levels of many miRNAs circulating in the mouse are increased with age, and that the increases can be antagonized by CR. The genes targeted by this set of age-modulated miRNAs are predicted to regulate biological processes directly relevant to the manifestations of aging including metabolic changes, and the miRNAs themselves have been linked to diseases associated with old age. This finding implicates circulating miRNAs in the aging process, raising questions about their tissues of origin, their cellular targets, and their functional role in metabolic changes that occur with aging.
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spelling pubmed-36162002013-04-08 Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction Dhahbi, Joseph M Spindler, Stephen R Atamna, Hani Yamakawa, Amy Guerrero, Noel Boffelli, Dario Mote, Patricia Martin, David IK Aging (Albany NY) Research Paper MicroRNAs (miRNAs) function to modulate gene expression, and through this property they regulate a broad spectrum of cellular processes. They can circulate in blood and thereby mediate cell-to-cell communication. Aging involves changes in many cellular processes that are potentially regulated by miRNAs, and some evidence has implicated circulating miRNAs in the aging process. In order to initiate a comprehensive assessment of the role of circulating miRNAs in aging, we have used deep sequencing to characterize circulating miRNAs in the serum of young mice, old mice, and old mice maintained on calorie restriction (CR). Deep sequencing identifies a set of novel miRNAs, and also accurately measures all known miRNAs present in serum. This analysis demonstrates that the levels of many miRNAs circulating in the mouse are increased with age, and that the increases can be antagonized by CR. The genes targeted by this set of age-modulated miRNAs are predicted to regulate biological processes directly relevant to the manifestations of aging including metabolic changes, and the miRNAs themselves have been linked to diseases associated with old age. This finding implicates circulating miRNAs in the aging process, raising questions about their tissues of origin, their cellular targets, and their functional role in metabolic changes that occur with aging. Impact Journals LLC 2013-02-28 /pmc/articles/PMC3616200/ /pubmed/23470454 Text en Copyright: © 2013 Dhahbi 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
Dhahbi, Joseph M
Spindler, Stephen R
Atamna, Hani
Yamakawa, Amy
Guerrero, Noel
Boffelli, Dario
Mote, Patricia
Martin, David IK
Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title_full Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title_fullStr Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title_full_unstemmed Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title_short Deep sequencing identifies circulating mouse miRNAs that are functionally implicated in manifestations of aging and responsive to calorie restriction
title_sort deep sequencing identifies circulating mouse mirnas that are functionally implicated in manifestations of aging and responsive to calorie restriction
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616200/
https://www.ncbi.nlm.nih.gov/pubmed/23470454
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