Cargando…

Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota

Many studies have demonstrated the importance of the gut microbiota in healthy and disease states. However, establishing the causality of host-microbiota interactions in humans is still challenging. Here, we describe a novel experimental system to define the transcriptional response induced by the m...

Descripción completa

Detalles Bibliográficos
Autores principales: Richards, Allison L., Burns, Michael B., Alazizi, Adnan, Barreiro, Luis B., Pique-Regi, Roger, Blekhman, Ran, Luca, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5047527/
https://www.ncbi.nlm.nih.gov/pubmed/27709125
http://dx.doi.org/10.1128/mSystems.00067-16
_version_ 1782457430972563456
author Richards, Allison L.
Burns, Michael B.
Alazizi, Adnan
Barreiro, Luis B.
Pique-Regi, Roger
Blekhman, Ran
Luca, Francesca
author_facet Richards, Allison L.
Burns, Michael B.
Alazizi, Adnan
Barreiro, Luis B.
Pique-Regi, Roger
Blekhman, Ran
Luca, Francesca
author_sort Richards, Allison L.
collection PubMed
description Many studies have demonstrated the importance of the gut microbiota in healthy and disease states. However, establishing the causality of host-microbiota interactions in humans is still challenging. Here, we describe a novel experimental system to define the transcriptional response induced by the microbiota for human cells and to shed light on the molecular mechanisms underlying host-gut microbiota interactions. In primary human colonic epithelial cells, we identified over 6,000 genes whose expression changed at various time points following coculturing with the gut microbiota of a healthy individual. Among the differentially expressed genes we found a 1.8-fold enrichment of genes associated with diseases that have been previously linked to the microbiome, such as obesity and colorectal cancer. In addition, our experimental system allowed us to identify 87 host single nucleotide polymorphisms (SNPs) that show allele-specific expression in 69 genes. Furthermore, for 12 SNPs in 12 different genes, allele-specific expression is conditional on the exposure to the microbiota. Of these 12 genes, 8 have been associated with diseases linked to the gut microbiota, specifically colorectal cancer, obesity, and type 2 diabetes. Our study demonstrates a scalable approach to study host-gut microbiota interactions and can be used to identify putative mechanisms for the interplay between host genetics and the microbiota in health and disease. IMPORTANCE The study of host-microbiota interactions in humans is largely limited to identifying associations between microbial communities and host phenotypes. While these studies have generated important insights on the links between the microbiota and human disease, the assessment of cause-and-effect relationships has been challenging. Although this relationship can be studied in germfree mice, this system is costly, and it is difficult to accurately account for the effects of host genotypic variation and environmental effects seen in humans. Here, we have developed a novel approach to directly investigate the transcriptional changes induced by live microbial communities on human colonic epithelial cells and how these changes are modulated by host genotype. This method is easily scalable to large numbers of host genetic backgrounds and diverse microbiota and can be utilized to elucidate the mechanisms of host-microbiota interactions. Future extensions may also include colonic organoid cultures.
format Online
Article
Text
id pubmed-5047527
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-50475272016-10-03 Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota Richards, Allison L. Burns, Michael B. Alazizi, Adnan Barreiro, Luis B. Pique-Regi, Roger Blekhman, Ran Luca, Francesca mSystems Research Article Many studies have demonstrated the importance of the gut microbiota in healthy and disease states. However, establishing the causality of host-microbiota interactions in humans is still challenging. Here, we describe a novel experimental system to define the transcriptional response induced by the microbiota for human cells and to shed light on the molecular mechanisms underlying host-gut microbiota interactions. In primary human colonic epithelial cells, we identified over 6,000 genes whose expression changed at various time points following coculturing with the gut microbiota of a healthy individual. Among the differentially expressed genes we found a 1.8-fold enrichment of genes associated with diseases that have been previously linked to the microbiome, such as obesity and colorectal cancer. In addition, our experimental system allowed us to identify 87 host single nucleotide polymorphisms (SNPs) that show allele-specific expression in 69 genes. Furthermore, for 12 SNPs in 12 different genes, allele-specific expression is conditional on the exposure to the microbiota. Of these 12 genes, 8 have been associated with diseases linked to the gut microbiota, specifically colorectal cancer, obesity, and type 2 diabetes. Our study demonstrates a scalable approach to study host-gut microbiota interactions and can be used to identify putative mechanisms for the interplay between host genetics and the microbiota in health and disease. IMPORTANCE The study of host-microbiota interactions in humans is largely limited to identifying associations between microbial communities and host phenotypes. While these studies have generated important insights on the links between the microbiota and human disease, the assessment of cause-and-effect relationships has been challenging. Although this relationship can be studied in germfree mice, this system is costly, and it is difficult to accurately account for the effects of host genotypic variation and environmental effects seen in humans. Here, we have developed a novel approach to directly investigate the transcriptional changes induced by live microbial communities on human colonic epithelial cells and how these changes are modulated by host genotype. This method is easily scalable to large numbers of host genetic backgrounds and diverse microbiota and can be utilized to elucidate the mechanisms of host-microbiota interactions. Future extensions may also include colonic organoid cultures. American Society for Microbiology 2016-08-30 /pmc/articles/PMC5047527/ /pubmed/27709125 http://dx.doi.org/10.1128/mSystems.00067-16 Text en Copyright © 2016 Richards et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Richards, Allison L.
Burns, Michael B.
Alazizi, Adnan
Barreiro, Luis B.
Pique-Regi, Roger
Blekhman, Ran
Luca, Francesca
Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title_full Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title_fullStr Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title_full_unstemmed Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title_short Genetic and Transcriptional Analysis of Human Host Response to Healthy Gut Microbiota
title_sort genetic and transcriptional analysis of human host response to healthy gut microbiota
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5047527/
https://www.ncbi.nlm.nih.gov/pubmed/27709125
http://dx.doi.org/10.1128/mSystems.00067-16
work_keys_str_mv AT richardsallisonl geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT burnsmichaelb geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT alaziziadnan geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT barreiroluisb geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT piqueregiroger geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT blekhmanran geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota
AT lucafrancesca geneticandtranscriptionalanalysisofhumanhostresponsetohealthygutmicrobiota