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Godornes, C.

Publications and source records attributed to Godornes, C..

2 recordsLinked to original sources

Treponema pallidum periplasmic and membrane proteins are recognized by circulating and skin CD4+ T cells

BackgroundHistologic and serologic studies suggest the induction of local and systemic Treponema pallidum (Tp)-specific CD4+ T cell responses to Tp infection. We hypothesized that Tp-specific CD4+ T cells are detectable in blood and in the skin rash of secondary syphilis and persist in both compartments after treatment. MethodsPBMC collected from 67 participants were screened by IFN{gamma} ELISPOT response to Tp sonicate. Tp-reactive T cell lines from blood and skin were probed for responses to 88 recombinant Tp antigens. Peptide epitopes and HLA class II restriction were defined for selected antigens. ResultsWe detected CD4+ T cell responses to Tp sonicate ex vivo. Using Tp-reactive T cell lines we observed recognition of 14 discrete proteins, 13 of which localize to bacterial membranes or the periplasmic space. After therapy, Tp-specific T cells persisted for at least 6 months in skin and 10 years in blood. ConclusionsTp infection elicits an antigen-specific CD4+ T cell response in blood and skin. Tp-specific CD4+ T cells persist as memory in both compartments long after curative therapy. The Tp antigenic targets we identified may be high priority vaccine candidates.

immunology↗

B-cell epitope mapping of TprC and TprD variants of Treponema pallidum subspecies

Several recent studies have focused on the identification, functional analysis, and structural characterization of outer membrane proteins (OMPs) of Treponema pallidum (Tp). The Tp species encompasses the highly related pallidum, pertenue, and endemicum subspecies of this pathogen, known to be the causative agents of syphilis, yaws, and bejel, respectively. These studies highlighted the importance of identifying surface-exposed OMP regions and the identification of B-cell epitopes that could be protective and used in vaccine development efforts. We previously reported that the TprC and TprD OMPs of Tp are predicted to contain external loops scattered throughout the entire length of the proteins, several of which show a low degree of sequence variability among strains and subspecies. In this study, these models were corroborated using AlphaFold2, a state-of-the-art protein structure modeling software. Here, we identified B-cell epitopes across the full-length TprC and TprD variants using the Geysan pepscan mapping approach with antisera from rabbits infected with syphilis, yaws, and bejel strains and from animals immunized with refolded recombinant TprC proteins from three syphilis strains. Our results show that the humoral response is primarily directed to sequences predicted to be on surface-exposed loops of TprC and TprD proteins, and that the magnitude of the humoral response to individual epitopes differs among animals infected with various syphilis strains and Tp subspecies. Rather than exhibiting strain-specificity, antisera showed various degrees of cross-reactivity with variant sequences from other strains. The data support the further exploration of TprC and TprD as vaccine candidates.

microbiology↗