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Smarcad1 mediates microbiota-induced inflammation in mouse and coordinates gene expression in the intestinal epithelium.
Kazakevych, Juri; Denizot, Jérémy; Liebert, Anke; Portovedo, Mariana; Mosavie, Mia; Jain, Payal; Stellato, Claudia; Fraser, Claire; Corrêa, Renan Oliveira; Célestine, Marina; Mattiuz, Raphaël; Okkenhaug, Hanneke; Miller, J Ross; Vinolo, Marco Aurélio Ramirez; Veldhoen, Marc; Varga-Weisz, Patrick.
Afiliação
  • Kazakevych J; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Denizot J; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Liebert A; Present Address: Université Clermont Auvergne, Inserm U1071, INRA USC2018, M2iSH, F-63000, Clermont-Ferrand, France.
  • Portovedo M; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Mosavie M; Present Address: The Francis Crick Institute, London, NW1 1AT, UK.
  • Jain P; Laboratory of Immunoinflammation, Institute of Biology, UNICAMP, Campinas, 13083-862, Brazil.
  • Stellato C; School of Biological Sciences, University of Essex, Colchester, CO4 3SQ, UK.
  • Fraser C; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Corrêa RO; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Célestine M; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Mattiuz R; Laboratory of Immunoinflammation, Institute of Biology, UNICAMP, Campinas, 13083-862, Brazil.
  • Okkenhaug H; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Miller JR; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Vinolo MAR; Imaging Facility, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Veldhoen M; Nuclear Dynamics, Babraham Institute, Cambridge, CB22 3AT, UK.
  • Varga-Weisz P; Laboratory of Immunoinflammation, Institute of Biology, UNICAMP, Campinas, 13083-862, Brazil.
Genome Biol ; 21(1): 64, 2020 03 11.
Article em En | MEDLINE | ID: mdl-32160911
ABSTRACT

BACKGROUND:

How intestinal epithelial cells interact with the microbiota and how this is regulated at the gene expression level are critical questions. Smarcad1 is a conserved chromatin remodeling factor with a poorly understood tissue function. As this factor is highly expressed in the stem and proliferative zones of the intestinal epithelium, we explore its role in this tissue.

RESULTS:

Specific deletion of Smarcad1 in the mouse intestinal epithelium leads to colitis resistance and substantial changes in gene expression, including a striking increase of expression of several genes linked to innate immunity. Absence of Smarcad1 leads to changes in chromatin accessibility and significant changes in histone H3K9me3 over many sites, including genes that are differentially regulated upon Smarcad1 deletion. We identify candidate members of the gut microbiome that elicit a Smarcad1-dependent colitis response, including members of the poorly understood TM7 phylum.

CONCLUSIONS:

Our study sheds light onto the role of the chromatin remodeling machinery in intestinal epithelial cells in the colitis response and shows how a highly conserved chromatin remodeling factor has a distinct role in anti-microbial defense. This work highlights the importance of the intestinal epithelium in the colitis response and the potential of microbial species as pharmacological and probiotic targets in the context of inflammatory diseases.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Regulação da Expressão Gênica / Colite / DNA Helicases / Mucosa Intestinal Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Regulação da Expressão Gênica / Colite / DNA Helicases / Mucosa Intestinal Idioma: En Ano de publicação: 2020 Tipo de documento: Article