Identification of cross-reactive vaccine antigen candidates in Gram-positive ESKAPE pathogens through subtractive proteome analysis using opsonic sera

O Océane Sadones E Eliza Kramarska M Maite Sainz-Mejías R Rita Berisio J Johannes Huebner S Siobhán McClean F Felipe Romero-Saavedra

Abstract

The Gram-positive pathogens of the ESKAPE group, Enterococcus faecium, and Staphylococcus aureus , are well-known to pose a serious risk to human health because of their high virulence and numerous drug resistances. To narrow down the list of previously identified promising protein vaccine candidates, a combination of several antigen discovery approaches was performed, in particular a “false positive analysis” of peptides generated by trypsin shaving with a subtractive proteome analysis. The final list of nine potential antigens included AdcA au , a protein performing the same function as AdcA fm , an already discovered antigen in enterococci. Bioinformatic analyses revealed that AdcA au and AdcA fm share a sequence identity of 41.2% and that the conserved regions present a high antigenicity. AdcA au was selected for further investigation and the results reported in this manuscript demonstrate the opsonic properties of AdcA au -specific antibodies against the Staphylococcus aureus strain MW2, as well as their cross-binding and cross-opsonic activity against several S. aureus, E. faecium , and E. faecalis strains. The experimental design revealed several promising vaccine candidates, including the newly identified S. aureus antigen, AdcA au . The study shows its potential as a vaccine candidate to prevent infections by dangerous Gram-positive ESKAPE pathogens.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 3
Published March 26, 2025
Pages e0319933
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (7)

O

Océane Sadones

E

Eliza Kramarska

M

Maite Sainz-Mejías

R

Rita Berisio

J

Johannes Huebner

S

Siobhán McClean

F

Felipe Romero-Saavedra