The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota
<p>The intestinal messenger RNA expression signature is affected by the presence and composition of the endogenous microbiota, with effects on host physiology. The intestine is also characterized by a distinctive micronome. However, it is not known if microbes also impact intestinal gene expre...
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Series: | International Journal of Biological Sciences |
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doaj-edb88db5a96841ef8b7e17fd7b3656362020-11-24T22:23:22ZengIvyspring International PublisherInternational Journal of Biological Sciences1449-22882012-01-0182171186The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous MicrobiotaNatasha Singh, Elize A. Shirdel, Levi Waldron, Regan-Heng Zhang, Igor Jurisica, Elena M. Comelli<p>The intestinal messenger RNA expression signature is affected by the presence and composition of the endogenous microbiota, with effects on host physiology. The intestine is also characterized by a distinctive micronome. However, it is not known if microbes also impact intestinal gene expression epigenetically. We investigated if the murine caecal microRNA expression signature depends on the presence of the microbiota, and the potential implications of this interaction on intestinal barrier function. Three hundred and thirty four microRNAs were detectable in the caecum of germ-free and conventional male mice and 16 were differentially expressed, with samples from the two groups clustering separately based on their expression patterns. Through a combination of computational and gene expression analyses, including the use of our curated list of 527 genes involved in intestinal barrier regulation, 2,755 putative targets of modulated microRNAs were identified, including 34 intestinal barrier-related genes encoding for junctional and mucus layer proteins and involved in immune regulation. This study shows that the endogenous microbiota influences the caecal microRNA expression signature, suggesting that microRNA modulation is another mechanism through which commensal bacteria impact the regulation of the barrier function and intestinal homeostasis. Through microRNAs, the gut microbiota may impinge a much larger number of genes than expected, particularly in diseases where its composition is altered. In this perspective, abnormally expressed microRNAs could be considered as novel therapeutic targets.</p>http://www.biolsci.org/v08p0171.htm |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Natasha Singh, Elize A. Shirdel, Levi Waldron, Regan-Heng Zhang, Igor Jurisica, Elena M. Comelli |
spellingShingle |
Natasha Singh, Elize A. Shirdel, Levi Waldron, Regan-Heng Zhang, Igor Jurisica, Elena M. Comelli The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota International Journal of Biological Sciences |
author_facet |
Natasha Singh, Elize A. Shirdel, Levi Waldron, Regan-Heng Zhang, Igor Jurisica, Elena M. Comelli |
author_sort |
Natasha Singh, Elize A. Shirdel, Levi Waldron, Regan-Heng Zhang, Igor Jurisica, Elena M. Comelli |
title |
The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota |
title_short |
The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota |
title_full |
The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota |
title_fullStr |
The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota |
title_full_unstemmed |
The Murine Caecal MicroRNA Signature Depends on the Presence of the Endogenous Microbiota |
title_sort |
murine caecal microrna signature depends on the presence of the endogenous microbiota |
publisher |
Ivyspring International Publisher |
series |
International Journal of Biological Sciences |
issn |
1449-2288 |
publishDate |
2012-01-01 |
description |
<p>The intestinal messenger RNA expression signature is affected by the presence and composition of the endogenous microbiota, with effects on host physiology. The intestine is also characterized by a distinctive micronome. However, it is not known if microbes also impact intestinal gene expression epigenetically. We investigated if the murine caecal microRNA expression signature depends on the presence of the microbiota, and the potential implications of this interaction on intestinal barrier function. Three hundred and thirty four microRNAs were detectable in the caecum of germ-free and conventional male mice and 16 were differentially expressed, with samples from the two groups clustering separately based on their expression patterns. Through a combination of computational and gene expression analyses, including the use of our curated list of 527 genes involved in intestinal barrier regulation, 2,755 putative targets of modulated microRNAs were identified, including 34 intestinal barrier-related genes encoding for junctional and mucus layer proteins and involved in immune regulation. This study shows that the endogenous microbiota influences the caecal microRNA expression signature, suggesting that microRNA modulation is another mechanism through which commensal bacteria impact the regulation of the barrier function and intestinal homeostasis. Through microRNAs, the gut microbiota may impinge a much larger number of genes than expected, particularly in diseases where its composition is altered. In this perspective, abnormally expressed microRNAs could be considered as novel therapeutic targets.</p> |
url |
http://www.biolsci.org/v08p0171.htm |
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