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Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation

Maternal diet during gestation and lactation affects the development of skeletal muscles in offspring and determines muscle health in later life. In this paper, we describe the association between maternal low protein diet-induced changes in offspring skeletal muscle and the differential expression...

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Autores principales: Kanakis, Ioannis, Alameddine, Moussira, Folkes, Leighton, Moxon, Simon, Myrtziou, Ioanna, Ozanne, Susan E., Peffers, Mandy J., Goljanek-Whysall, Katarzyna, Vasilaki, Aphrodite
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8150574/
https://www.ncbi.nlm.nih.gov/pubmed/34064819
http://dx.doi.org/10.3390/cells10051166
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author Kanakis, Ioannis
Alameddine, Moussira
Folkes, Leighton
Moxon, Simon
Myrtziou, Ioanna
Ozanne, Susan E.
Peffers, Mandy J.
Goljanek-Whysall, Katarzyna
Vasilaki, Aphrodite
author_facet Kanakis, Ioannis
Alameddine, Moussira
Folkes, Leighton
Moxon, Simon
Myrtziou, Ioanna
Ozanne, Susan E.
Peffers, Mandy J.
Goljanek-Whysall, Katarzyna
Vasilaki, Aphrodite
author_sort Kanakis, Ioannis
collection PubMed
description Maternal diet during gestation and lactation affects the development of skeletal muscles in offspring and determines muscle health in later life. In this paper, we describe the association between maternal low protein diet-induced changes in offspring skeletal muscle and the differential expression (DE) of small non-coding RNAs (sncRNAs). We used a mouse model of maternal protein restriction, where dams were fed either a normal (N, 20%) or a low protein (L, 8%) diet during gestation and newborns were cross-fostered to N or L lactating dams, resulting in the generation of NN, NL and LN offspring groups. Total body and tibialis anterior (TA) weights were decreased in weanling NL male offspring but were not different in the LN group, as compared to NN. However, histological evaluation of TA muscle revealed reduced muscle fibre size in both groups at weaning. Small RNA-sequencing demonstrated DE of multiple miRs, snoRNAs and snRNAs. Bioinformatic analyses of miRs-15a, -34a, -122 and -199a, in combination with known myomiRs, confirmed their implication in key muscle-specific biological processes. This is the first comprehensive report for the DE of sncRNAs in nutrition-associated programming of skeletal muscle development, highlighting the need for further research to unravel the detailed molecular mechanisms.
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spelling pubmed-81505742021-05-27 Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation Kanakis, Ioannis Alameddine, Moussira Folkes, Leighton Moxon, Simon Myrtziou, Ioanna Ozanne, Susan E. Peffers, Mandy J. Goljanek-Whysall, Katarzyna Vasilaki, Aphrodite Cells Article Maternal diet during gestation and lactation affects the development of skeletal muscles in offspring and determines muscle health in later life. In this paper, we describe the association between maternal low protein diet-induced changes in offspring skeletal muscle and the differential expression (DE) of small non-coding RNAs (sncRNAs). We used a mouse model of maternal protein restriction, where dams were fed either a normal (N, 20%) or a low protein (L, 8%) diet during gestation and newborns were cross-fostered to N or L lactating dams, resulting in the generation of NN, NL and LN offspring groups. Total body and tibialis anterior (TA) weights were decreased in weanling NL male offspring but were not different in the LN group, as compared to NN. However, histological evaluation of TA muscle revealed reduced muscle fibre size in both groups at weaning. Small RNA-sequencing demonstrated DE of multiple miRs, snoRNAs and snRNAs. Bioinformatic analyses of miRs-15a, -34a, -122 and -199a, in combination with known myomiRs, confirmed their implication in key muscle-specific biological processes. This is the first comprehensive report for the DE of sncRNAs in nutrition-associated programming of skeletal muscle development, highlighting the need for further research to unravel the detailed molecular mechanisms. MDPI 2021-05-11 /pmc/articles/PMC8150574/ /pubmed/34064819 http://dx.doi.org/10.3390/cells10051166 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kanakis, Ioannis
Alameddine, Moussira
Folkes, Leighton
Moxon, Simon
Myrtziou, Ioanna
Ozanne, Susan E.
Peffers, Mandy J.
Goljanek-Whysall, Katarzyna
Vasilaki, Aphrodite
Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title_full Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title_fullStr Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title_full_unstemmed Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title_short Small-RNA Sequencing Reveals Altered Skeletal Muscle microRNAs and snoRNAs Signatures in Weanling Male Offspring from Mouse Dams Fed a Low Protein Diet during Lactation
title_sort small-rna sequencing reveals altered skeletal muscle micrornas and snornas signatures in weanling male offspring from mouse dams fed a low protein diet during lactation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8150574/
https://www.ncbi.nlm.nih.gov/pubmed/34064819
http://dx.doi.org/10.3390/cells10051166
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