Colonic metaproteomic signatures of active bacteria and the host in obesity
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Summary
Analysis of the faecal metaproteome revealed notably that the phylum Bacteroidetes was metabolically more active in the obese than nonobese subjects, and the importance of integrating data of the host and microbiota to understand their interactions is emphasized.
- Type
- article
- Published
- 2015-10-01
- Cited by
- 71
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W1793535310
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:966865
Keywords
Metaproteomics, Biology, Phylogenetic tree, Bacteroidetes, Gene
References
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- High-fat diet alters gut microbiota physiology in mice
- Mucolytic Bacteria With Increased Prevalence in IBD Mucosa Augment In Vitro Utilization of Mucin by Other Bacteria
- Human intestinal microbiota composition is associated with local and systemic inflammation in obesity
Cited by
- Linking Microbiota to Human Diseases: A Systems Biology Perspective.
- The human gut microbiome and its dysfunctions through the meta‐omics prism
- Tackling probiotic and gut microbiota functionality through proteomics.
- Faecal Metaproteomic Analysis Reveals a Personalized and Stable Functional Microbiome and Limited Effects of a Probiotic Intervention in Adults
- Gut microbiome and lipid metabolism: from associations to mechanisms
- Metaproteomic data analysis at a glance: advances in computational microbial community proteomics
- The impact of sequence database choice on metaproteomic results in gut microbiota studies
- Microbiome and metabolic disease: revisiting the bacterial phylum Bacteroidetes
- Intestinal microbiome landscaping: insight in community assemblage and implications for microbial modulation strategies
- Metaproteomic analysis of human gut microbiota: where are we heading?
- Endothelial dysfunction: what is the role of the microbiota?
- Assessing the impact of protein extraction methods for human gut metaproteomics.
- Microbiota and HDL metabolism
- Human Gut Microbiome: Function Matters.
- Resources and tools for the high-throughput, multi-omic study of intestinal microbiota
- Proteomics and the human microbiome: where we are today and where we would like to be.
- Evaluating Causality of Gut Microbiota in Obesity and Diabetes in Humans
- Precision medicine in cow's milk allergy: proteomics perspectives from allergens to patients.
- Gut Microbiota Profiling and Gut–Brain Crosstalk in Children Affected by Pediatric Acute-Onset Neuropsychiatric Syndrome and Pediatric Autoimmune Neuropsychiatric Disorders Associated With Streptococcal Infections
- Flux, Impact, and Fate of Halogenated Xenobiotic Compounds in the Gut
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