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Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability

Ceramides mediate crucial cellular processes including cell death and inflammation and have recently been implicated in inflammatory bowel disease. Ceramides consist of a sphingoid long‐chain base to which fatty acids of various length can be attached. We now investigate the effect of alerting the c...

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Autores principales: Kim, Ye‐Ryung, Volpert, Giora, Shin, Kyong‐Oh, Kim, So‐Yeon, Shin, Sun‐Hye, Lee, Younghay, Sung, Sun Hee, Lee, Yong‐Moon, Ahn, Jung‐Hyuck, Pewzner‐Jung, Yael, Park, Woo‐Jae, Futerman, Anthony H., Park, Joo‐Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5706577/
https://www.ncbi.nlm.nih.gov/pubmed/28699686
http://dx.doi.org/10.1111/jcmm.13267
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author Kim, Ye‐Ryung
Volpert, Giora
Shin, Kyong‐Oh
Kim, So‐Yeon
Shin, Sun‐Hye
Lee, Younghay
Sung, Sun Hee
Lee, Yong‐Moon
Ahn, Jung‐Hyuck
Pewzner‐Jung, Yael
Park, Woo‐Jae
Futerman, Anthony H.
Park, Joo‐Won
author_facet Kim, Ye‐Ryung
Volpert, Giora
Shin, Kyong‐Oh
Kim, So‐Yeon
Shin, Sun‐Hye
Lee, Younghay
Sung, Sun Hee
Lee, Yong‐Moon
Ahn, Jung‐Hyuck
Pewzner‐Jung, Yael
Park, Woo‐Jae
Futerman, Anthony H.
Park, Joo‐Won
author_sort Kim, Ye‐Ryung
collection PubMed
description Ceramides mediate crucial cellular processes including cell death and inflammation and have recently been implicated in inflammatory bowel disease. Ceramides consist of a sphingoid long‐chain base to which fatty acids of various length can be attached. We now investigate the effect of alerting the ceramide acyl chain length on a mouse model of colitis. Ceramide synthase (CerS) 2 null mice, which lack very‐long acyl chain ceramides with concomitant increase of long chain bases and C16‐ceramides, were more susceptible to dextran sodium sulphate‐induced colitis, and their survival rate was markedly decreased compared with that of wild‐type littermates. Using mixed bone‐marrow chimeric mice, we showed that the host environment is primarily responsible for intestinal barrier dysfunction and increased intestinal permeability. In the colon of CerS2 null mice, the expression of junctional adhesion molecule‐A was markedly decreased and the phosphorylation of myosin light chain 2 was increased. In vitro experiments using Caco‐2 cells also confirmed an important role of CerS2 in maintaining epithelial barrier function; CerS2‐knockdown via CRISPR‐Cas9 technology impaired barrier function. In vivo myriocin administration, which normalized long‐chain bases and C16‐ceramides of the colon of CerS2 null mice, increased intestinal permeability as measured by serum FITC‐dextran levels, indicating that altered SLs including deficiency of very‐long‐chain ceramides are critical for epithelial barrier function. In conclusion, deficiency of CerS2 influences intestinal barrier function and the severity of experimental colitis and may represent a potential mechanism for inflammatory bowel disease pathogenesis.
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spelling pubmed-57065772017-12-06 Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability Kim, Ye‐Ryung Volpert, Giora Shin, Kyong‐Oh Kim, So‐Yeon Shin, Sun‐Hye Lee, Younghay Sung, Sun Hee Lee, Yong‐Moon Ahn, Jung‐Hyuck Pewzner‐Jung, Yael Park, Woo‐Jae Futerman, Anthony H. Park, Joo‐Won J Cell Mol Med Original Articles Ceramides mediate crucial cellular processes including cell death and inflammation and have recently been implicated in inflammatory bowel disease. Ceramides consist of a sphingoid long‐chain base to which fatty acids of various length can be attached. We now investigate the effect of alerting the ceramide acyl chain length on a mouse model of colitis. Ceramide synthase (CerS) 2 null mice, which lack very‐long acyl chain ceramides with concomitant increase of long chain bases and C16‐ceramides, were more susceptible to dextran sodium sulphate‐induced colitis, and their survival rate was markedly decreased compared with that of wild‐type littermates. Using mixed bone‐marrow chimeric mice, we showed that the host environment is primarily responsible for intestinal barrier dysfunction and increased intestinal permeability. In the colon of CerS2 null mice, the expression of junctional adhesion molecule‐A was markedly decreased and the phosphorylation of myosin light chain 2 was increased. In vitro experiments using Caco‐2 cells also confirmed an important role of CerS2 in maintaining epithelial barrier function; CerS2‐knockdown via CRISPR‐Cas9 technology impaired barrier function. In vivo myriocin administration, which normalized long‐chain bases and C16‐ceramides of the colon of CerS2 null mice, increased intestinal permeability as measured by serum FITC‐dextran levels, indicating that altered SLs including deficiency of very‐long‐chain ceramides are critical for epithelial barrier function. In conclusion, deficiency of CerS2 influences intestinal barrier function and the severity of experimental colitis and may represent a potential mechanism for inflammatory bowel disease pathogenesis. John Wiley and Sons Inc. 2017-07-12 2017-12 /pmc/articles/PMC5706577/ /pubmed/28699686 http://dx.doi.org/10.1111/jcmm.13267 Text en © 2017 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kim, Ye‐Ryung
Volpert, Giora
Shin, Kyong‐Oh
Kim, So‐Yeon
Shin, Sun‐Hye
Lee, Younghay
Sung, Sun Hee
Lee, Yong‐Moon
Ahn, Jung‐Hyuck
Pewzner‐Jung, Yael
Park, Woo‐Jae
Futerman, Anthony H.
Park, Joo‐Won
Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title_full Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title_fullStr Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title_full_unstemmed Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title_short Ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
title_sort ablation of ceramide synthase 2 exacerbates dextran sodium sulphate‐induced colitis in mice due to increased intestinal permeability
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5706577/
https://www.ncbi.nlm.nih.gov/pubmed/28699686
http://dx.doi.org/10.1111/jcmm.13267
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