Cargando…

Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism

Fucosyltransferase 2 (FUT2) is an enzyme that is responsible for the synthesis of the H antigen in body fluids and on the intestinal mucosa. The H antigen is an oligosaccharide moiety that acts as both an attachment site and carbon source for intestinal bacteria. Non-secretors, who are homozygous fo...

Descripción completa

Detalles Bibliográficos
Autores principales: Tong, Maomeng, McHardy, Ian, Ruegger, Paul, Goudarzi, Maryam, Kashyap, Purna C, Haritunians, Talin, Li, Xiaoxiao, Graeber, Thomas G, Schwager, Emma, Huttenhower, Curtis, Fornace, Albert J, Sonnenburg, Justin L, McGovern, Dermot PB, Borneman, James, Braun, Jonathan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4992076/
https://www.ncbi.nlm.nih.gov/pubmed/24781901
http://dx.doi.org/10.1038/ismej.2014.64
_version_ 1782448947561758720
author Tong, Maomeng
McHardy, Ian
Ruegger, Paul
Goudarzi, Maryam
Kashyap, Purna C
Haritunians, Talin
Li, Xiaoxiao
Graeber, Thomas G
Schwager, Emma
Huttenhower, Curtis
Fornace, Albert J
Sonnenburg, Justin L
McGovern, Dermot PB
Borneman, James
Braun, Jonathan
author_facet Tong, Maomeng
McHardy, Ian
Ruegger, Paul
Goudarzi, Maryam
Kashyap, Purna C
Haritunians, Talin
Li, Xiaoxiao
Graeber, Thomas G
Schwager, Emma
Huttenhower, Curtis
Fornace, Albert J
Sonnenburg, Justin L
McGovern, Dermot PB
Borneman, James
Braun, Jonathan
author_sort Tong, Maomeng
collection PubMed
description Fucosyltransferase 2 (FUT2) is an enzyme that is responsible for the synthesis of the H antigen in body fluids and on the intestinal mucosa. The H antigen is an oligosaccharide moiety that acts as both an attachment site and carbon source for intestinal bacteria. Non-secretors, who are homozygous for the loss-of-function alleles of FUT2 gene (sese), have increased susceptibility to Crohn's disease (CD). To characterize the effect of FUT2 polymorphism on the mucosal ecosystem, we profiled the microbiome, meta-proteome and meta-metabolome of 75 endoscopic lavage samples from the cecum and sigmoid of 39 healthy subjects (12 SeSe, 18 Sese and 9 sese). Imputed metagenomic analysis revealed perturbations of energy metabolism in the microbiome of non-secretor and heterozygote individuals, notably the enrichment of carbohydrate and lipid metabolism, cofactor and vitamin metabolism and glycan biosynthesis and metabolism-related pathways, and the depletion of amino-acid biosynthesis and metabolism. Similar changes were observed in mice bearing the FUT2(−/−) genotype. Metabolomic analysis of human specimens revealed concordant as well as novel changes in the levels of several metabolites. Human metaproteomic analysis indicated that these functional changes were accompanied by sub-clinical levels of inflammation in the local intestinal mucosa. Therefore, the colonic microbiota of non-secretors is altered at both the compositional and functional levels, affecting the host mucosal state and potentially explaining the association of FUT2 genotype and CD susceptibility.
format Online
Article
Text
id pubmed-4992076
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-49920762016-09-01 Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism Tong, Maomeng McHardy, Ian Ruegger, Paul Goudarzi, Maryam Kashyap, Purna C Haritunians, Talin Li, Xiaoxiao Graeber, Thomas G Schwager, Emma Huttenhower, Curtis Fornace, Albert J Sonnenburg, Justin L McGovern, Dermot PB Borneman, James Braun, Jonathan ISME J Original Article Fucosyltransferase 2 (FUT2) is an enzyme that is responsible for the synthesis of the H antigen in body fluids and on the intestinal mucosa. The H antigen is an oligosaccharide moiety that acts as both an attachment site and carbon source for intestinal bacteria. Non-secretors, who are homozygous for the loss-of-function alleles of FUT2 gene (sese), have increased susceptibility to Crohn's disease (CD). To characterize the effect of FUT2 polymorphism on the mucosal ecosystem, we profiled the microbiome, meta-proteome and meta-metabolome of 75 endoscopic lavage samples from the cecum and sigmoid of 39 healthy subjects (12 SeSe, 18 Sese and 9 sese). Imputed metagenomic analysis revealed perturbations of energy metabolism in the microbiome of non-secretor and heterozygote individuals, notably the enrichment of carbohydrate and lipid metabolism, cofactor and vitamin metabolism and glycan biosynthesis and metabolism-related pathways, and the depletion of amino-acid biosynthesis and metabolism. Similar changes were observed in mice bearing the FUT2(−/−) genotype. Metabolomic analysis of human specimens revealed concordant as well as novel changes in the levels of several metabolites. Human metaproteomic analysis indicated that these functional changes were accompanied by sub-clinical levels of inflammation in the local intestinal mucosa. Therefore, the colonic microbiota of non-secretors is altered at both the compositional and functional levels, affecting the host mucosal state and potentially explaining the association of FUT2 genotype and CD susceptibility. Nature Publishing Group 2014-11 2014-04-29 /pmc/articles/PMC4992076/ /pubmed/24781901 http://dx.doi.org/10.1038/ismej.2014.64 Text en Copyright © 2014 International Society for Microbial Ecology http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Tong, Maomeng
McHardy, Ian
Ruegger, Paul
Goudarzi, Maryam
Kashyap, Purna C
Haritunians, Talin
Li, Xiaoxiao
Graeber, Thomas G
Schwager, Emma
Huttenhower, Curtis
Fornace, Albert J
Sonnenburg, Justin L
McGovern, Dermot PB
Borneman, James
Braun, Jonathan
Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title_full Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title_fullStr Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title_full_unstemmed Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title_short Reprograming of gut microbiome energy metabolism by the FUT2 Crohn's disease risk polymorphism
title_sort reprograming of gut microbiome energy metabolism by the fut2 crohn's disease risk polymorphism
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4992076/
https://www.ncbi.nlm.nih.gov/pubmed/24781901
http://dx.doi.org/10.1038/ismej.2014.64
work_keys_str_mv AT tongmaomeng reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT mchardyian reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT rueggerpaul reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT goudarzimaryam reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT kashyappurnac reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT haritunianstalin reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT lixiaoxiao reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT graeberthomasg reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT schwageremma reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT huttenhowercurtis reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT fornacealbertj reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT sonnenburgjustinl reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT mcgoverndermotpb reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT bornemanjames reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism
AT braunjonathan reprogramingofgutmicrobiomeenergymetabolismbythefut2crohnsdiseaseriskpolymorphism