Gonococcal invasion into epithelial cells depends on both cell polarity and ezrin

Author:

Yu QianORCID,Wang Liang-ChunORCID,Di Benigno Sofia,Stein Daniel C.ORCID,Song WenxiaORCID

Abstract

Neisseria gonorrhoeae (GC) establishes infection in women from the cervix, lined with heterogeneous epithelial cells from non-polarized stratified at the ectocervix to polarized columnar at the endocervix. We have previously shown that GC differentially colonize and transmigrate across the ecto and endocervical epithelia. However, whether and how GC invade into heterogeneous cervical epithelial cells is unknown. This study examined GC entry of epithelial cells with various properties, using human cervical tissue explant and non-polarized/polarized epithelial cell line models. While adhering to non-polarized and polarized epithelial cells at similar levels, GC invaded into non-polarized more efficiently than polarized epithelial cells. The enhanced GC invasion in non-polarized epithelial cells was associated with increased ezrin phosphorylation, F-actin and ezrin recruitment to GC adherent sites, and the elongation of GC-associated microvilli. Inhibition of ezrin phosphorylation inhibited F-actin and ezrin recruitment and microvilli elongation, leading to a reduction in GC invasion. The reduced GC invasion in polarized epithelial cells was associated with non-muscle myosin II-mediated F-actin disassembly and microvilli denudation at GC adherence sites. Surprisingly, intraepithelial GC were only detected inside epithelial cells shedding from the cervix by immunofluorescence microscopy, but not significantly in the ectocervical and the endocervical regions. We observed similar ezrin and F-actin recruitment in exfoliated cervical epithelial cells but not in those that remained in the ectocervical epithelium, as the luminal layer of ectocervical epithelial cells expressed ten-fold lower levels of ezrin than those beneath. However, GC inoculation induced F-actin reduction and myosin recruitment in the endocervix, similar to what was seen in polarized epithelial cells. Collectively, our results suggest that while GC invade non-polarized epithelial cells through ezrin-driven microvilli elongation, the apical polarization of ezrin and F-actin inhibits GC entry into polarized epithelial cells.

Funder

National Institute of Allergy and Infectious Diseases

National Institutes of Health

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference98 articles.

1. Neisseria gonorrhoeae: Drug Resistance, Mouse Models, and Vaccine Development;PA Rice;Annu Rev Microbiol,2017

2. Neisseria gonorrhoeae host adaptation and pathogenesis;SJ Quillin;Nat Rev Microbiol,2018

3. Planning for a gonococcal vaccine: A narrative review of vaccine development and public health implications.;WE Abara;Sex Transm Dis,2020

4. The molecular mechanisms used by Neisseria gonorrhoeae to initiate infection differ between men and women;JL Edwards;Clin Microbiol Rev,2004

5. The Pathobiology of Neisseria gonorrhoeae Lower Female Genital Tract Infection.;JL Edwards;Front Microbiol.,2011

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