6533b7d7fe1ef96bd12684ff

RESEARCH PRODUCT

Altered metabolism of gut microbiota contributes to chronic immune activation in HIV-infected individuals.

Nadia MadridA. VallejoAlejandro ArtachoManuel LealJ Del RomeroSergio Serrano-villarFernando DrondaJorge F. Vázquez-castellanosAndrés MoyaVicente EstradaMaría José GosalbesSantiago MorenoMar VeraMaría Loreto FerrúsSara Ferrando-martinezTalia SainzAmparo LatorreJavier Martínez-botas

subject

ImmunologyHIV InfectionsBiologyGut floraAdaptive ImmunityMicrobiologyMetabolomicsImmunityAntiretroviral Therapy Highly ActiveRNA Ribosomal 16SMetabolomeImmunology and AllergyCluster AnalysisHumansMetabolomicsGeneCase-control studyBayes TheoremBiodiversityAcquired immune systembiology.organism_classificationImmunity InnateMarkov ChainsGastrointestinal MicrobiomeMetabolic pathwayCase-Control StudiesImmunologyDisease ProgressionHIV-1MetabolomeMetagenome

description

Altered interplay between gut mucosa and microbiota during treated HIV infection may possibly contribute to increased bacterial translocation and chronic immune activation, both of which are predictors of morbidity and mortality. Although a dysbiotic gut microbiota has recently been reported in HIV + individuals, the metagenome gene pool associated with HIV infection remains unknown. The aim of this study is to characterize the functional gene content of gut microbiota in HIV + patients and to define the metabolic pathways of this bacterial community, which is potentially associated with immune dysfunction. We determined systemic markers of innate and adaptive immunity in a cohort of HIV-infected individuals on successful antiretroviral therapy without comorbidities and in healthy non-HIV-infected subjects. Metagenome sequencing revealed an altered functional profile, with enrichment of the genes involved in various pathogenic processes, lipopolysaccharide biosynthesis, bacterial translocation, and other inflammatory pathways. In contrast, we observed depletion of genes involved in amino acid metabolism and energy processes. Bayesian networks showed significant interactions between the bacterial community, their altered metabolic pathways, and systemic markers of immune dysfunction. This study reveals altered metabolic activity of microbiota and provides novel insight into the potential host-microbiota interactions driving the sustained inflammatory state in successfully treated HIV-infected patients.

10.1038/mi.2014.107https://pubmed.ncbi.nlm.nih.gov/25407519