Literature DB >> 22184244

Metagenomic systems biology of the human gut microbiome reveals topological shifts associated with obesity and inflammatory bowel disease.

Sharon Greenblum1, Peter J Turnbaugh, Elhanan Borenstein.   

Abstract

The human microbiome plays a key role in a wide range of host-related processes and has a profound effect on human health. Comparative analyses of the human microbiome have revealed substantial variation in species and gene composition associated with a variety of disease states but may fall short of providing a comprehensive understanding of the impact of this variation on the community and on the host. Here, we introduce a metagenomic systems biology computational framework, integrating metagenomic data with an in silico systems-level analysis of metabolic networks. Focusing on the gut microbiome, we analyze fecal metagenomic data from 124 unrelated individuals, as well as six monozygotic twin pairs and their mothers, and generate community-level metabolic networks of the microbiome. Placing variations in gene abundance in the context of these networks, we identify both gene-level and network-level topological differences associated with obesity and inflammatory bowel disease (IBD). We show that genes associated with either of these host states tend to be located at the periphery of the metabolic network and are enriched for topologically derived metabolic "inputs." These findings may indicate that lean and obese microbiomes differ primarily in their interface with the host and in the way they interact with host metabolism. We further demonstrate that obese microbiomes are less modular, a hallmark of adaptation to low-diversity environments. We additionally link these topological variations to community species composition. The system-level approach presented here lays the foundation for a unique framework for studying the human microbiome, its organization, and its impact on human health.

Entities:  

Mesh:

Year:  2011        PMID: 22184244      PMCID: PMC3258644          DOI: 10.1073/pnas.1116053109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  54 in total

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Journal:  Nucleic Acids Res       Date:  2006-01-01       Impact factor: 16.971

Review 9.  Applications of genome-scale metabolic reconstructions.

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  290 in total

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Review 2.  Guts, germs, and meals: the origin of type 1 diabetes.

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3.  Observing the invisible through imaging mass spectrometry, a window into the metabolic exchange patterns of microbes.

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7.  Microbial determinants of biochemical individuality and their impact on toxicology and pharmacology.

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8.  Metabolic alterations to the mucosal microbiota in inflammatory bowel disease.

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Review 9.  Mechanisms of weight loss and improved metabolism following bariatric surgery.

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10.  Functional relevance of genes implicated by obesity genome-wide association study signals for human adipocyte biology.

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