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The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns

When faced with adverse environmental conditions, the marsupial Dromiciops gliroides uses either daily or seasonal torpor to support survival and is the only known hibernating mammal in South America. As the sole living representative of the ancient Order Microbiotheria, this species can provide cru...

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Autores principales: Hadj-Moussa, Hanane, Moggridge, Jason A., Luu, Bryan E., Quintero-Galvis, Julian F., Gaitán-Espitia, Juan Diego, Nespolo, Roberto F., Storey, Kenneth B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4835794/
https://www.ncbi.nlm.nih.gov/pubmed/27090740
http://dx.doi.org/10.1038/srep24627
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author Hadj-Moussa, Hanane
Moggridge, Jason A.
Luu, Bryan E.
Quintero-Galvis, Julian F.
Gaitán-Espitia, Juan Diego
Nespolo, Roberto F.
Storey, Kenneth B.
author_facet Hadj-Moussa, Hanane
Moggridge, Jason A.
Luu, Bryan E.
Quintero-Galvis, Julian F.
Gaitán-Espitia, Juan Diego
Nespolo, Roberto F.
Storey, Kenneth B.
author_sort Hadj-Moussa, Hanane
collection PubMed
description When faced with adverse environmental conditions, the marsupial Dromiciops gliroides uses either daily or seasonal torpor to support survival and is the only known hibernating mammal in South America. As the sole living representative of the ancient Order Microbiotheria, this species can provide crucial information about the evolutionary origins and biochemical mechanisms of hibernation. Hibernation is a complex energy-saving strategy that involves changes in gene expression that are elicited in part by microRNAs. To better elucidate the role of microRNAs in orchestrating hypometabolism, a modified stem-loop technique and quantitative PCR were used to characterize the relative expression levels of 85 microRNAs in liver and skeletal muscle of control and torpid D. gliroides. Thirty-nine microRNAs were differentially regulated during torpor; of these, 35 were downregulated in liver and 11 were differentially expressed in skeletal muscle. Bioinformatic analysis predicted that the downregulated liver microRNAs were associated with activation of MAPK, PI3K-Akt and mTOR pathways, suggesting their importance in facilitating marsupial torpor. In skeletal muscle, hibernation-responsive microRNAs were predicted to regulate focal adhesion, ErbB, and mTOR pathways, indicating a promotion of muscle maintenance mechanisms. These tissue-specific responses suggest that microRNAs regulate key molecular pathways that facilitate hibernation, thermoregulation, and prevention of muscle disuse atrophy.
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spelling pubmed-48357942016-04-27 The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns Hadj-Moussa, Hanane Moggridge, Jason A. Luu, Bryan E. Quintero-Galvis, Julian F. Gaitán-Espitia, Juan Diego Nespolo, Roberto F. Storey, Kenneth B. Sci Rep Article When faced with adverse environmental conditions, the marsupial Dromiciops gliroides uses either daily or seasonal torpor to support survival and is the only known hibernating mammal in South America. As the sole living representative of the ancient Order Microbiotheria, this species can provide crucial information about the evolutionary origins and biochemical mechanisms of hibernation. Hibernation is a complex energy-saving strategy that involves changes in gene expression that are elicited in part by microRNAs. To better elucidate the role of microRNAs in orchestrating hypometabolism, a modified stem-loop technique and quantitative PCR were used to characterize the relative expression levels of 85 microRNAs in liver and skeletal muscle of control and torpid D. gliroides. Thirty-nine microRNAs were differentially regulated during torpor; of these, 35 were downregulated in liver and 11 were differentially expressed in skeletal muscle. Bioinformatic analysis predicted that the downregulated liver microRNAs were associated with activation of MAPK, PI3K-Akt and mTOR pathways, suggesting their importance in facilitating marsupial torpor. In skeletal muscle, hibernation-responsive microRNAs were predicted to regulate focal adhesion, ErbB, and mTOR pathways, indicating a promotion of muscle maintenance mechanisms. These tissue-specific responses suggest that microRNAs regulate key molecular pathways that facilitate hibernation, thermoregulation, and prevention of muscle disuse atrophy. Nature Publishing Group 2016-04-19 /pmc/articles/PMC4835794/ /pubmed/27090740 http://dx.doi.org/10.1038/srep24627 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Hadj-Moussa, Hanane
Moggridge, Jason A.
Luu, Bryan E.
Quintero-Galvis, Julian F.
Gaitán-Espitia, Juan Diego
Nespolo, Roberto F.
Storey, Kenneth B.
The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title_full The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title_fullStr The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title_full_unstemmed The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title_short The hibernating South American marsupial, Dromiciops gliroides, displays torpor-sensitive microRNA expression patterns
title_sort hibernating south american marsupial, dromiciops gliroides, displays torpor-sensitive microrna expression patterns
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4835794/
https://www.ncbi.nlm.nih.gov/pubmed/27090740
http://dx.doi.org/10.1038/srep24627
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