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Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway

Autophagy is implicated in Crohn's disease (CD) pathogenesis. Recent evidence suggests autophagy regulates the microRNA (miRNA)-induced silencing complex (miRISC). Therefore, autophagy may play a novel role in CD by regulating expression of miRISC, thereby altering miRNA silencing. As microbes...

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Autores principales: Sibony, Michal, Abdullah, Majd, Greenfield, Laura, Raju, Deepa, Wu, Ted, Rodrigues, David M., Galindo-Mata, Esther, Mascarenhas, Heidi, Philpott, Dana J., Silverberg, Mark S., Jones, Nicola L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4645954/
https://www.ncbi.nlm.nih.gov/pubmed/26332312
http://dx.doi.org/10.1097/MIB.0000000000000553
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author Sibony, Michal
Abdullah, Majd
Greenfield, Laura
Raju, Deepa
Wu, Ted
Rodrigues, David M.
Galindo-Mata, Esther
Mascarenhas, Heidi
Philpott, Dana J.
Silverberg, Mark S.
Jones, Nicola L.
author_facet Sibony, Michal
Abdullah, Majd
Greenfield, Laura
Raju, Deepa
Wu, Ted
Rodrigues, David M.
Galindo-Mata, Esther
Mascarenhas, Heidi
Philpott, Dana J.
Silverberg, Mark S.
Jones, Nicola L.
author_sort Sibony, Michal
collection PubMed
description Autophagy is implicated in Crohn's disease (CD) pathogenesis. Recent evidence suggests autophagy regulates the microRNA (miRNA)-induced silencing complex (miRISC). Therefore, autophagy may play a novel role in CD by regulating expression of miRISC, thereby altering miRNA silencing. As microbes associated with CD can alter autophagy, we hypothesized that microbial disruption of autophagy affects the critical miRISC component AGO2. METHODS: AGO2 expression was assessed in epithelial and immune cells, and intestinal organoids with disrupted autophagy. Microarray technology was used to determine the expression of downstream miRNAs in cells with defective autophagy. RESULTS: Increased AGO2 was detected in autophagy-deficient ATG5−/− and ATG16−/− mouse embryonic fibroblast cells (MEFs) in comparison with wild-type MEFs. Chemical agents and VacA toxin, which disrupt autophagy, increased AGO2 expression in MEFs, epithelial cells lines, and human monocytes, respectively. Increased AGO2 was also detected in ATG7−/− intestinal organoids, in comparison with wild-type organoids. Five miRNAs were differentially expressed in autophagy-deficient MEFs. Pathway enrichment analysis of the differentially expressed miRNAs implicated signaling pathways previously associated with CD. CONCLUSIONS: Taken together, our results suggest that autophagy is involved in the regulation of the critical miRISC component AGO2 in epithelial and immune cells and primary intestinal epithelial cells. We propose a mechanism by which autophagy alters miRNA expression, which likely impacts the regulation of CD-associated pathways. Furthermore, as enteric microbial products can manipulate autophagy and AGO2, our findings suggest a novel mechanism by which enteric microbes could influence miRNA to promote disease.
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spelling pubmed-46459542015-11-30 Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway Sibony, Michal Abdullah, Majd Greenfield, Laura Raju, Deepa Wu, Ted Rodrigues, David M. Galindo-Mata, Esther Mascarenhas, Heidi Philpott, Dana J. Silverberg, Mark S. Jones, Nicola L. Inflamm Bowel Dis Original Basic Science Articles Autophagy is implicated in Crohn's disease (CD) pathogenesis. Recent evidence suggests autophagy regulates the microRNA (miRNA)-induced silencing complex (miRISC). Therefore, autophagy may play a novel role in CD by regulating expression of miRISC, thereby altering miRNA silencing. As microbes associated with CD can alter autophagy, we hypothesized that microbial disruption of autophagy affects the critical miRISC component AGO2. METHODS: AGO2 expression was assessed in epithelial and immune cells, and intestinal organoids with disrupted autophagy. Microarray technology was used to determine the expression of downstream miRNAs in cells with defective autophagy. RESULTS: Increased AGO2 was detected in autophagy-deficient ATG5−/− and ATG16−/− mouse embryonic fibroblast cells (MEFs) in comparison with wild-type MEFs. Chemical agents and VacA toxin, which disrupt autophagy, increased AGO2 expression in MEFs, epithelial cells lines, and human monocytes, respectively. Increased AGO2 was also detected in ATG7−/− intestinal organoids, in comparison with wild-type organoids. Five miRNAs were differentially expressed in autophagy-deficient MEFs. Pathway enrichment analysis of the differentially expressed miRNAs implicated signaling pathways previously associated with CD. CONCLUSIONS: Taken together, our results suggest that autophagy is involved in the regulation of the critical miRISC component AGO2 in epithelial and immune cells and primary intestinal epithelial cells. We propose a mechanism by which autophagy alters miRNA expression, which likely impacts the regulation of CD-associated pathways. Furthermore, as enteric microbial products can manipulate autophagy and AGO2, our findings suggest a novel mechanism by which enteric microbes could influence miRNA to promote disease. Lippincott Williams & Wilkins 2015-08-31 2015-12 /pmc/articles/PMC4645954/ /pubmed/26332312 http://dx.doi.org/10.1097/MIB.0000000000000553 Text en Copyright © 2015 Crohn's & Colitis Foundation of America, Inc. This is an open access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially.
spellingShingle Original Basic Science Articles
Sibony, Michal
Abdullah, Majd
Greenfield, Laura
Raju, Deepa
Wu, Ted
Rodrigues, David M.
Galindo-Mata, Esther
Mascarenhas, Heidi
Philpott, Dana J.
Silverberg, Mark S.
Jones, Nicola L.
Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title_full Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title_fullStr Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title_full_unstemmed Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title_short Microbial Disruption of Autophagy Alters Expression of the RISC Component AGO2, a Critical Regulator of the miRNA Silencing Pathway
title_sort microbial disruption of autophagy alters expression of the risc component ago2, a critical regulator of the mirna silencing pathway
topic Original Basic Science Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4645954/
https://www.ncbi.nlm.nih.gov/pubmed/26332312
http://dx.doi.org/10.1097/MIB.0000000000000553
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