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Prediction of HIV-1 Coreceptor Usage Tropism by Sequence Analysis using a Genotypic Approach
Published on: December 1, 2011
Gut resistome linked to sexual preference and HIV infection
Elisa Rubio Garcia1,2,3, Maria Casadellà4, Mariona Parera4
1Department of Microbiology, CDB, Hospital Clinic, University of Barcelona, Barcelona, Spain. elrubio@clinic.cat.
Background:
People living with HIV (PLWH) are at increased risk of acquisition of multidrug resistant organisms due to higher rates of predisposing factors. The gut microbiome is the main reservoir of the collection of antimicrobial resistance determinants known as the gut resistome. In PLWH, changes in gut microbiome have been linked to immune activation and HIV-1 associated complications. Specifically, gut dysbiosis defined by low microbial gene richness has been linked to low Nadir CD4 + T-cell counts. Additionally, sexual preference has been shown to strongly influence gut microbiome composition in PLWH resulting in different Prevotella or Bacteroides enriched enterotypes, in MSM (men-who-have-sex-with-men) or no-MSM, respectively. To date, little is known about gut resistome composition in PLWH due to the scarcity of studies using shotgun metagenomics. The present study aimed to detect associations between different microbiome features linked to HIV-1 infection and gut resistome composition.
Results:
Using shotgun metagenomics we characterized the gut resistome composition of 129 HIV-1 infected subjects showing different HIV clinical profiles and 27 HIV-1 negative controls from a cross-sectional observational study conducted in Barcelona, Spain. Most no-MSM showed a Bacteroides-enriched enterotype and low microbial gene richness microbiomes. We did not identify differences in resistome diversity and composition according to HIV-1 infection or immune status. However, gut resistome was more diverse in MSM group, Prevotella-enriched enterotype and gut micorbiomes with high microbial gene richness compared to no-MSM group, Bacteroides-enriched enterotype and gut microbiomes with low microbial gene richness. Additionally, gut resistome beta-diversity was different according to the defined groups and we identified a set of differentially abundant antimicrobial resistance determinants based on the established categories.
Conclusions:
Our findings reveal a significant correlation between gut resistome composition and various host variables commonly associated with gut microbiome, including microbiome enterotype, microbial gene richness, and sexual preference. These host variables have been previously linked to immune activation and lower Nadir CD4 + T-Cell counts, which are prognostic factors of HIV-related comorbidities. This study provides new insights into the relationship between antibiotic resistance and clinical characteristics of PLWH.
Insights
The gut resistome composition in people living with HIV (PLWH) correlates with microbiome features like enterotype and microbial gene richness, and sexual preference. These factors are linked to immune activation and lower CD4+ T-cell counts in PLWH.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- People living with HIV (PLWH) face increased risk of multidrug-resistant organisms due to predisposing factors.
- The gut microbiome, a reservoir for antimicrobial resistance determinants (gut resistome), is altered in PLWH, linked to immune activation and HIV-1 complications.
- Gut dysbiosis, characterized by low microbial gene richness, is associated with lower Nadir CD4+ T-cell counts in PLWH.
Purpose of the Study:
- To investigate the composition of the gut resistome in PLWH.
- To identify associations between gut microbiome features and gut resistome composition in PLWH.
- To explore the influence of host variables like sexual preference on gut resistome in PLWH.
Main Methods:
- Shotgun metagenomics was employed to characterize the gut resistome.
- The study included 129 HIV-1 infected subjects and 27 HIV-1 negative controls.
- Analysis focused on resistome diversity, composition, and beta-diversity in relation to host variables.
Main Results:
- No significant differences in resistome diversity or composition were found based on HIV-1 infection status or immune status.
- Gut resistome diversity was higher in men-who-have-sex-with-men (MSM) with Prevotella-enriched enterotypes and high microbial gene richness compared to no-MSM with Bacteroides-enriched enterotypes and low microbial gene richness.
- Significant differences in gut resistome beta-diversity were observed between groups, with identified differentially abundant antimicrobial resistance determinants.
Conclusions:
- Gut resistome composition is significantly correlated with microbiome enterotype, microbial gene richness, and sexual preference in PLWH.
- These host-associated microbiome features are previously linked to immune activation and lower Nadir CD4+ T-cell counts, prognostic factors for HIV-related comorbidities.
- The study offers novel insights into the interplay between antibiotic resistance and clinical characteristics in people living with HIV.
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