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Reid, T. B.

Publications and source records attributed to Reid, T. B..

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↗

Genomic epidemiology of Treponema pallidum and circulation of strains with diminished tprK antigen variation capability in Seattle, 2021-2022

BackgroundSyphilis incidence continues to increase dramatically in the United States and yet little is known about Treponema pallidum (TP) genomic epidemiology within American metropolitan areas. MethodsWe performed whole genome sequencing and tprK deep sequencing of 28 TP-containing specimens collected mostly from remnant Aptima swabs from 24 individuals from Seattle Sexual Health Clinic during 2021-2022. ResultsAll 12 individuals infected with Nichols lineage strains were MSM, while a specific SS14 cluster (average 0.33 SNPs) included 1 MSW and five women. All TP strains sequenced were azithromycin resistant via 23S rRNA A2058G mutation. Identical TP genomic sequences were found in pharyngeal and rectal swab specimens taken from the same individuals concurrently. tprK sequences were less variable between patient-matched specimens and between epidemiologically-linked clusters. We detected a 528 bp deletion in the tprK donor site locus, eliminating nine tprK donor sites, in TP genomes of three individuals with secondary syphilis, associated with diminution of overall tprK sequence diversity. ConclusionsWe developed an end-to-end workflow for public health genomic surveillance of TP from remnant Aptima swab specimens. With its high rate of gene conversion, tprK sequencing may assist in linking cases beyond routine TP genome sequencing. TP strains with deletions in tprK donor sites currently circulate and are associated with diminished antigenic diversity of the TprK putative outer membrane protein.

genomics↗