Literature DB >> 28515336

The effects of micronutrient deficiencies on bacterial species from the human gut microbiota.

Matthew C Hibberd1,2, Meng Wu1, Dmitry A Rodionov3,4, Xiaoqing Li4, Jiye Cheng1,2, Nicholas W Griffin1,2, Michael J Barratt1,2, Richard J Giannone5, Robert L Hettich5, Andrei L Osterman4, Jeffrey I Gordon6,2.   

Abstract

Vitamin and mineral (micronutrient) deficiencies afflict 2 billion people. Although the impact of these imbalances on host biology has been studied extensively, much less is known about their effects on the gut microbiota of developing or adult humans. Therefore, we established a community of cultured, sequenced human gut-derived bacterial species in gnotobiotic mice and fed the animals a defined micronutrient-sufficient diet, followed by a derivative diet devoid of vitamin A, folate, iron, or zinc, followed by return to the sufficient diet. Acute vitamin A deficiency had the largest effect on bacterial community structure and metatranscriptome, with Bacteroides vulgatus, a prominent responder, increasing its abundance in the absence of vitamin A. Applying retinol selection to a library of 30,300 B. vulgatus transposon mutants revealed that disruption of acrR abrogated retinol sensitivity. Genetic complementation studies, microbial RNA sequencing, and transcription factor-binding assays disclosed that AcrR is a repressor of an adjacent AcrAB-TolC efflux system. Retinol efflux measurements in wild-type and acrR-mutant strains plus treatment with a pharmacologic inhibitor of the efflux system revealed that AcrAB-TolC is a determinant of retinol and bile acid sensitivity in B. vulgatus Acute vitamin A deficiency was associated with altered bile acid metabolism in vivo, raising the possibility that retinol, bile acid metabolites, and AcrAB-TolC interact to influence the fitness of B. vulgatus and perhaps other microbiota members. This type of preclinical model can help to develop mechanistic insights about the effects of, and more effective treatment strategies for micronutrient deficiencies.
Copyright © 2017, American Association for the Advancement of Science.

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Year:  2017        PMID: 28515336      PMCID: PMC5524138          DOI: 10.1126/scitranslmed.aal4069

Source DB:  PubMed          Journal:  Sci Transl Med        ISSN: 1946-6234            Impact factor:   17.956


  63 in total

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Review 2.  Enzymes catalyzing the hydrolysis of retinyl esters.

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Authors:  H I Zgurskaya; H Nikaido
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Authors:  D Ma; M Alberti; C Lynch; H Nikaido; J E Hearst
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10.  Bioremediation of a Common Product of Food Processing by a Human Gut Bacterium.

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