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SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease

Post-translational modification pathways such as SUMOylation are integral to all cellular processes and tissue homeostasis. We investigated the possible involvement of SUMOylation in the epithelial signalling in Crohn's disease (CD) and ulcerative colitis (UC), the two major forms of inflammato...

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Autores principales: Mustfa, Salman Ahmad, Singh, Mukesh, Suhail, Aamir, Mohapatra, Gayatree, Verma, Smriti, Chakravorty, Debangana, Rana, Sarika, Rampal, Ritika, Dhar, Atika, Saha, Sudipto, Ahuja, Vineet, Srikanth, C. V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5493774/
https://www.ncbi.nlm.nih.gov/pubmed/28659381
http://dx.doi.org/10.1098/rsob.170024
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author Mustfa, Salman Ahmad
Singh, Mukesh
Suhail, Aamir
Mohapatra, Gayatree
Verma, Smriti
Chakravorty, Debangana
Rana, Sarika
Rampal, Ritika
Dhar, Atika
Saha, Sudipto
Ahuja, Vineet
Srikanth, C. V.
author_facet Mustfa, Salman Ahmad
Singh, Mukesh
Suhail, Aamir
Mohapatra, Gayatree
Verma, Smriti
Chakravorty, Debangana
Rana, Sarika
Rampal, Ritika
Dhar, Atika
Saha, Sudipto
Ahuja, Vineet
Srikanth, C. V.
author_sort Mustfa, Salman Ahmad
collection PubMed
description Post-translational modification pathways such as SUMOylation are integral to all cellular processes and tissue homeostasis. We investigated the possible involvement of SUMOylation in the epithelial signalling in Crohn's disease (CD) and ulcerative colitis (UC), the two major forms of inflammatory bowel disease (IBD). Initially in a murine model of IBD, induced by dextran–sulfate–sodium (DSS mice), we observed inflammation accompanied by a lowering of global SUMOylation of colonic epithelium. The observed SUMOylation alteration was due to a decrease in the sole SUMO E2 enzyme (Ubc9). Mass-spectrometric analysis revealed the existence of a distinct SUMOylome (SUMO-conjugated proteome) in DSS mice with alteration of key cellular regulators, including master kinase Akt1. Knocking-down of Ubc9 in epithelial cells resulted in dramatic activation of inflammatory gene expression, a phenomenon that acted via reduction in Akt1 and its SUMOylated form. Importantly, a strong decrease in Ubc9 and Akt1 was also seen in endoscopic biopsy samples (N = 66) of human CD and UC patients. Furthermore, patients with maximum disease indices were always accompanied by severely lowered Ubc9 or SUMOylated-Akt1. Mucosal tissues with severely compromised Ubc9 function displayed higher levels of pro-inflammatory cytokines and compromised wound-healing markers. Thus, our results reveal an important and previously undescribed role for the SUMOylation pathway involving Ubc9 and Akt1 in modulation of epithelial inflammatory signalling in IBD.
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spelling pubmed-54937742017-07-05 SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease Mustfa, Salman Ahmad Singh, Mukesh Suhail, Aamir Mohapatra, Gayatree Verma, Smriti Chakravorty, Debangana Rana, Sarika Rampal, Ritika Dhar, Atika Saha, Sudipto Ahuja, Vineet Srikanth, C. V. Open Biol Research Post-translational modification pathways such as SUMOylation are integral to all cellular processes and tissue homeostasis. We investigated the possible involvement of SUMOylation in the epithelial signalling in Crohn's disease (CD) and ulcerative colitis (UC), the two major forms of inflammatory bowel disease (IBD). Initially in a murine model of IBD, induced by dextran–sulfate–sodium (DSS mice), we observed inflammation accompanied by a lowering of global SUMOylation of colonic epithelium. The observed SUMOylation alteration was due to a decrease in the sole SUMO E2 enzyme (Ubc9). Mass-spectrometric analysis revealed the existence of a distinct SUMOylome (SUMO-conjugated proteome) in DSS mice with alteration of key cellular regulators, including master kinase Akt1. Knocking-down of Ubc9 in epithelial cells resulted in dramatic activation of inflammatory gene expression, a phenomenon that acted via reduction in Akt1 and its SUMOylated form. Importantly, a strong decrease in Ubc9 and Akt1 was also seen in endoscopic biopsy samples (N = 66) of human CD and UC patients. Furthermore, patients with maximum disease indices were always accompanied by severely lowered Ubc9 or SUMOylated-Akt1. Mucosal tissues with severely compromised Ubc9 function displayed higher levels of pro-inflammatory cytokines and compromised wound-healing markers. Thus, our results reveal an important and previously undescribed role for the SUMOylation pathway involving Ubc9 and Akt1 in modulation of epithelial inflammatory signalling in IBD. The Royal Society 2017-06-28 /pmc/articles/PMC5493774/ /pubmed/28659381 http://dx.doi.org/10.1098/rsob.170024 Text en © 2017 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Mustfa, Salman Ahmad
Singh, Mukesh
Suhail, Aamir
Mohapatra, Gayatree
Verma, Smriti
Chakravorty, Debangana
Rana, Sarika
Rampal, Ritika
Dhar, Atika
Saha, Sudipto
Ahuja, Vineet
Srikanth, C. V.
SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title_full SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title_fullStr SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title_full_unstemmed SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title_short SUMOylation pathway alteration coupled with downregulation of SUMO E2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
title_sort sumoylation pathway alteration coupled with downregulation of sumo e2 enzyme at mucosal epithelium modulates inflammation in inflammatory bowel disease
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5493774/
https://www.ncbi.nlm.nih.gov/pubmed/28659381
http://dx.doi.org/10.1098/rsob.170024
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