NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.

Trichomonas vaginalis is a human protozoan parasite that causes trichomoniasis, a prevalent sexually transmitted infection. Trichomoniasis is accompanied by a shift to a dysbiotic vaginal microbiome that is depleted of lactobacilli. Studies on co-cultures have shown that vaginal bacteria in eubiosis...

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Main Authors: Michael J Barnett, Jully Pinheiro, Jeremy R Keown, Jacob Biboy, Joe Gray, Ioana-Wilhelmina Lucinescu, Waldemar Vollmer, Robert P Hirt, Augusto Simoes-Barbosa, David C Goldstone
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2023-08-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1011563
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author Michael J Barnett
Jully Pinheiro
Jeremy R Keown
Jacob Biboy
Joe Gray
Ioana-Wilhelmina Lucinescu
Waldemar Vollmer
Robert P Hirt
Augusto Simoes-Barbosa
David C Goldstone
author_facet Michael J Barnett
Jully Pinheiro
Jeremy R Keown
Jacob Biboy
Joe Gray
Ioana-Wilhelmina Lucinescu
Waldemar Vollmer
Robert P Hirt
Augusto Simoes-Barbosa
David C Goldstone
author_sort Michael J Barnett
collection DOAJ
description Trichomonas vaginalis is a human protozoan parasite that causes trichomoniasis, a prevalent sexually transmitted infection. Trichomoniasis is accompanied by a shift to a dysbiotic vaginal microbiome that is depleted of lactobacilli. Studies on co-cultures have shown that vaginal bacteria in eubiosis (e.g. Lactobacillus gasseri) have antagonistic effects on T. vaginalis pathogenesis, suggesting that the parasite might benefit from shaping the microbiome to dysbiosis (e.g. Gardnerella vaginalis among other anaerobes). We have recently shown that T. vaginalis has acquired NlpC/P60 genes from bacteria, expanding them to a repertoire of nine TvNlpC genes in two distinct clans, and that TvNlpCs of clan A are active against bacterial peptidoglycan. Here, we expand this characterization to TvNlpCs of clan B. In this study, we show that the clan organisation of NlpC/P60 genes is a feature of other species of Trichomonas, and that Histomonas meleagridis has sequences related to one clan. We characterized the 3D structure of TvNlpC_B3 alone and with the inhibitor E64 bound, probing the active site of these enzymes for the first time. Lastly, we demonstrated that TvNlpC_B3 and TvNlpC_B5 have complementary activities with the previously described TvNlpCs of clan A and that exogenous expression of these enzymes empower this mucosal parasite to take over populations of vaginal lactobacilli in mixed cultures. TvNlpC_B3 helps control populations of L. gasseri, but not of G. vaginalis, which action is partially inhibited by E64. This study is one of the first to show how enzymes produced by a mucosal protozoan parasite may contribute to a shift on the status of a microbiome, helping explain the link between trichomoniasis and vaginal dysbiosis. Further understanding of this process might have significant implications for treatments in the future.
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spelling doaj.art-1fa6536ce56e459b8ef360e8d10f2ff62023-09-23T05:30:44ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742023-08-01198e101156310.1371/journal.ppat.1011563NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.Michael J BarnettJully PinheiroJeremy R KeownJacob BiboyJoe GrayIoana-Wilhelmina LucinescuWaldemar VollmerRobert P HirtAugusto Simoes-BarbosaDavid C GoldstoneTrichomonas vaginalis is a human protozoan parasite that causes trichomoniasis, a prevalent sexually transmitted infection. Trichomoniasis is accompanied by a shift to a dysbiotic vaginal microbiome that is depleted of lactobacilli. Studies on co-cultures have shown that vaginal bacteria in eubiosis (e.g. Lactobacillus gasseri) have antagonistic effects on T. vaginalis pathogenesis, suggesting that the parasite might benefit from shaping the microbiome to dysbiosis (e.g. Gardnerella vaginalis among other anaerobes). We have recently shown that T. vaginalis has acquired NlpC/P60 genes from bacteria, expanding them to a repertoire of nine TvNlpC genes in two distinct clans, and that TvNlpCs of clan A are active against bacterial peptidoglycan. Here, we expand this characterization to TvNlpCs of clan B. In this study, we show that the clan organisation of NlpC/P60 genes is a feature of other species of Trichomonas, and that Histomonas meleagridis has sequences related to one clan. We characterized the 3D structure of TvNlpC_B3 alone and with the inhibitor E64 bound, probing the active site of these enzymes for the first time. Lastly, we demonstrated that TvNlpC_B3 and TvNlpC_B5 have complementary activities with the previously described TvNlpCs of clan A and that exogenous expression of these enzymes empower this mucosal parasite to take over populations of vaginal lactobacilli in mixed cultures. TvNlpC_B3 helps control populations of L. gasseri, but not of G. vaginalis, which action is partially inhibited by E64. This study is one of the first to show how enzymes produced by a mucosal protozoan parasite may contribute to a shift on the status of a microbiome, helping explain the link between trichomoniasis and vaginal dysbiosis. Further understanding of this process might have significant implications for treatments in the future.https://doi.org/10.1371/journal.ppat.1011563
spellingShingle Michael J Barnett
Jully Pinheiro
Jeremy R Keown
Jacob Biboy
Joe Gray
Ioana-Wilhelmina Lucinescu
Waldemar Vollmer
Robert P Hirt
Augusto Simoes-Barbosa
David C Goldstone
NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
PLoS Pathogens
title NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
title_full NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
title_fullStr NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
title_full_unstemmed NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
title_short NlpC/P60 peptidoglycan hydrolases of Trichomonas vaginalis have complementary activities that empower the protozoan to control host-protective lactobacilli.
title_sort nlpc p60 peptidoglycan hydrolases of trichomonas vaginalis have complementary activities that empower the protozoan to control host protective lactobacilli
url https://doi.org/10.1371/journal.ppat.1011563
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