Vaginal microbes alter epithelial transcriptomic and epigenomic modifications providing insight into the molecular mechanisms for susceptibility to adverse reproductive outcomes

Author:

Elovitz Michal1ORCID,Anton Lauren2ORCID,Cristancho Ana3ORCID,Ferguson Briana4,Joseph Andrea5,Ravel Jacques6ORCID

Affiliation:

1. Icahn School of Medicine at Mount Sinai

2. Perelman School of Medicine at the University of Pennsylvania

3. Children's Hospital of Philadelphia, Perelman School of Medicine at the University of Pennsylvania

4. University of Pennsylvania

5. Ichan School of Medicine at Mount Sinai

6. University of Maryland, Baltimore

Abstract

Abstract The cervicovaginal microbiome is highly associated with women’s health with microbial communities dominated by Lactobacillus spp. being considered optimal. Conversely, a lack of lactobacilli and a high abundance of strict and facultative anaerobes including Gardnerella vaginalis, have been associated with adverse reproductive outcomes. However, the molecular pathways modulated by microbe interactions with the cervicovaginal epithelia remain unclear. Using RNA-sequencing, we characterize the in vitro cervicovaginal epithelial transcriptional response to different vaginal bacteria and their culture supernatants. We showed that G. vaginalis upregulated genes were associated with an activated innate immune response including anti-microbial peptides and inflammasome pathways, represented by NLRP3-mediated increases in caspase-1, IL-1β and cell death. Cervicovaginal epithelial cells exposed to L. crispatus showed limited transcriptomic changes, while exposure to L. crispatus culture supernatants resulted in a shift in the epigenomic landscape of cervical epithelial cells. ATAC-sequencing confirmed epigenetic changes with reduced chromatin accessibility. This study reveals new insight into host-microbe interactions in the lower reproductive tract and suggest potential therapeutic strategies leveraging the vaginal microbiome to improve reproductive health.

Publisher

Research Square Platform LLC

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