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Prediction of the intestinal resistome by a three-dimensional structure-based method

Authors :
European Commission
Instituto de Salud Carlos III
Comunidad de Madrid
European Society of Clinical Microbiology and Infectious Diseases
Ruppé, Etienne
Ghozlane, Amine
Tap, Julien
Pons, Nicolás
Álvarez, Anne-Sophie
Maziers, Nicolás
Cuesta, Trinidad
Hernando-Amado, Sara
Clares, Irene
Martínez, José Luis
Coque, Teresa M.
Baquero, Fernando
Lanza, Val F.
Máiz, Luis
Goulenok, Tiphaine
Lastours, Victoire de
Amor, Nawal
Fantin, Bruno
Wieder, Ingrid
Andremont, Antoine
Schaik, Willem van
Rogers, Malbert
Zhang, Xinglin
Willems, Rob J.
Brevern, Alexandre G. de
Batto, Jean-Michel
Blottière, Hervé M.
Léonard, Pierre
Léjard, Véronique
Letur, Aline
Levenez, Florence
Weiszer, Kevin
Haimet, Florence
Doré, Joël
Kennedy, Sean
Ehrlich, S. Dusko
European Commission
Instituto de Salud Carlos III
Comunidad de Madrid
European Society of Clinical Microbiology and Infectious Diseases
Ruppé, Etienne
Ghozlane, Amine
Tap, Julien
Pons, Nicolás
Álvarez, Anne-Sophie
Maziers, Nicolás
Cuesta, Trinidad
Hernando-Amado, Sara
Clares, Irene
Martínez, José Luis
Coque, Teresa M.
Baquero, Fernando
Lanza, Val F.
Máiz, Luis
Goulenok, Tiphaine
Lastours, Victoire de
Amor, Nawal
Fantin, Bruno
Wieder, Ingrid
Andremont, Antoine
Schaik, Willem van
Rogers, Malbert
Zhang, Xinglin
Willems, Rob J.
Brevern, Alexandre G. de
Batto, Jean-Michel
Blottière, Hervé M.
Léonard, Pierre
Léjard, Véronique
Letur, Aline
Levenez, Florence
Weiszer, Kevin
Haimet, Florence
Doré, Joël
Kennedy, Sean
Ehrlich, S. Dusko
Publication Year :
2019

Abstract

The intestinal microbiota is considered to be a major reservoir of antibiotic resistance determinants (ARDs) that could potentially be transferred to bacterial pathogens via mobile genetic elements. Yet, this assumption is poorly supported by empirical evidence due to the distant homologies between known ARDs (mostly from culturable bacteria) and ARDs from the intestinal microbiota. Consequently, an accurate census of intestinal ARDs (that is, the intestinal resistome) has not yet been fully determined. For this purpose, we developed and validated an annotation method (called pairwise comparative modelling) on the basis of a three-dimensional structure (homology comparative modelling), leading to the prediction of 6,095 ARDs in a catalogue of 3.9 million proteins from the human intestinal microbiota. We found that the majority of predicted ARDs (pdARDs) were distantly related to known ARDs (mean amino acid identity 29.8%) and found little evidence supporting their transfer between species. According to the composition of their resistome, we were able to cluster subjects from the MetaHIT cohort (n = 663) into six resistotypes that were connected to the previously described enterotypes. Finally, we found that the relative abundance of pdARDs was positively associated with gene richness, but not when subjects were exposed to antibiotics. Altogether, our results indicate that the majority of intestinal microbiota ARDs can be considered intrinsic to the dominant commensal microbiota and that these genes are rarely shared with bacterial pathogens.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286573077
Document Type :
Electronic Resource