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MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria

Tuberculosis (TB) is the leading cause of mortality from a single infectious agent, Mycobacterium tuberculosis. Relevant immune targets of the partially efficacious TB vaccine bacille Calmette–Guérin (BCG) remain poorly defined. Mucosal-associated invariant T (MAIT) cells are MHC-related protein 1 (...

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Autores principales: Suliman, Sara, Murphy, Melissa, Musvosvi, Munyaradzi, Gela, Anele, Meermeier, Erin W., Geldenhuys, Hennie, Hopley, Christiaan, Toefy, Asma, Bilek, Nicole, Veldsman, Ashley, Hanekom, Willem A., Johnson, John L., Boom, W. Henry, Obermoser, Gerlinde, Huang, Huang, Hatherill, Mark, Lewinsohn, David M., Nemes, Elisa, Scriba, Thomas J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6859375/
https://www.ncbi.nlm.nih.gov/pubmed/31611259
http://dx.doi.org/10.4049/jimmunol.1900674
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author Suliman, Sara
Murphy, Melissa
Musvosvi, Munyaradzi
Gela, Anele
Meermeier, Erin W.
Geldenhuys, Hennie
Hopley, Christiaan
Toefy, Asma
Bilek, Nicole
Veldsman, Ashley
Hanekom, Willem A.
Johnson, John L.
Boom, W. Henry
Obermoser, Gerlinde
Huang, Huang
Hatherill, Mark
Lewinsohn, David M.
Nemes, Elisa
Scriba, Thomas J.
author_facet Suliman, Sara
Murphy, Melissa
Musvosvi, Munyaradzi
Gela, Anele
Meermeier, Erin W.
Geldenhuys, Hennie
Hopley, Christiaan
Toefy, Asma
Bilek, Nicole
Veldsman, Ashley
Hanekom, Willem A.
Johnson, John L.
Boom, W. Henry
Obermoser, Gerlinde
Huang, Huang
Hatherill, Mark
Lewinsohn, David M.
Nemes, Elisa
Scriba, Thomas J.
author_sort Suliman, Sara
collection PubMed
description Tuberculosis (TB) is the leading cause of mortality from a single infectious agent, Mycobacterium tuberculosis. Relevant immune targets of the partially efficacious TB vaccine bacille Calmette–Guérin (BCG) remain poorly defined. Mucosal-associated invariant T (MAIT) cells are MHC-related protein 1 (MR1)–restricted T cells, which are reactive against M. tuberculosis, and underexplored as potential TB vaccine targets. We sought to determine whether BCG vaccination activated mycobacteria-specific MAIT cell responses in humans. We analyzed whole blood samples from M. tuberculosis–infected South African adults who were revaccinated with BCG after a six-month course of isoniazid preventative therapy. In vitro BCG stimulation potently induced IFN-γ expression by phenotypic (CD8(+)CD26(+)CD161(+)) MAIT cells, which constituted the majority (75%) of BCG-reactive IFN-γ–producing CD8(+) T cells. BCG revaccination transiently expanded peripheral blood frequencies of BCG-reactive IFN-γ(+) MAIT cells, which returned to baseline frequencies a year following vaccination. In another cohort of healthy adults who received BCG at birth, 53% of mycobacteria-reactive–activated CD8 T cells expressed CDR3α TCRs, previously reported as MAIT TCRs, expressing the canonical TRAV1-2-TRAJ33 MAIT TCRα rearrangement. CD26 and CD161 coexpression correlated with TRAV1-2(+)CD161(+) phenotype more accurately in CD8(+) than CD4(−)CD8(−) MAIT cells. Interestingly, BCG-induced IFN-γ expression by MAIT cells in vitro was mediated by the innate cytokines IL-12 and IL-18 more than MR1-induced TCR signaling, suggesting TCR-independent activation. Collectively, the data suggest that activation of blood MAIT cells by innate inflammatory cytokines is a major mechanism of responsiveness to vaccination with whole cell vaccines against TB or in vitro stimulation with mycobacteria (Clinical trial registration: NCT01119521).
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spelling pubmed-68593752019-11-21 MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria Suliman, Sara Murphy, Melissa Musvosvi, Munyaradzi Gela, Anele Meermeier, Erin W. Geldenhuys, Hennie Hopley, Christiaan Toefy, Asma Bilek, Nicole Veldsman, Ashley Hanekom, Willem A. Johnson, John L. Boom, W. Henry Obermoser, Gerlinde Huang, Huang Hatherill, Mark Lewinsohn, David M. Nemes, Elisa Scriba, Thomas J. J Immunol Immunotherapy and Vaccines Tuberculosis (TB) is the leading cause of mortality from a single infectious agent, Mycobacterium tuberculosis. Relevant immune targets of the partially efficacious TB vaccine bacille Calmette–Guérin (BCG) remain poorly defined. Mucosal-associated invariant T (MAIT) cells are MHC-related protein 1 (MR1)–restricted T cells, which are reactive against M. tuberculosis, and underexplored as potential TB vaccine targets. We sought to determine whether BCG vaccination activated mycobacteria-specific MAIT cell responses in humans. We analyzed whole blood samples from M. tuberculosis–infected South African adults who were revaccinated with BCG after a six-month course of isoniazid preventative therapy. In vitro BCG stimulation potently induced IFN-γ expression by phenotypic (CD8(+)CD26(+)CD161(+)) MAIT cells, which constituted the majority (75%) of BCG-reactive IFN-γ–producing CD8(+) T cells. BCG revaccination transiently expanded peripheral blood frequencies of BCG-reactive IFN-γ(+) MAIT cells, which returned to baseline frequencies a year following vaccination. In another cohort of healthy adults who received BCG at birth, 53% of mycobacteria-reactive–activated CD8 T cells expressed CDR3α TCRs, previously reported as MAIT TCRs, expressing the canonical TRAV1-2-TRAJ33 MAIT TCRα rearrangement. CD26 and CD161 coexpression correlated with TRAV1-2(+)CD161(+) phenotype more accurately in CD8(+) than CD4(−)CD8(−) MAIT cells. Interestingly, BCG-induced IFN-γ expression by MAIT cells in vitro was mediated by the innate cytokines IL-12 and IL-18 more than MR1-induced TCR signaling, suggesting TCR-independent activation. Collectively, the data suggest that activation of blood MAIT cells by innate inflammatory cytokines is a major mechanism of responsiveness to vaccination with whole cell vaccines against TB or in vitro stimulation with mycobacteria (Clinical trial registration: NCT01119521). AAI 2019-12-01 2019-10-14 /pmc/articles/PMC6859375/ /pubmed/31611259 http://dx.doi.org/10.4049/jimmunol.1900674 Text en Copyright © 2019 The Authors https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the CC BY 4.0 Unported license.
spellingShingle Immunotherapy and Vaccines
Suliman, Sara
Murphy, Melissa
Musvosvi, Munyaradzi
Gela, Anele
Meermeier, Erin W.
Geldenhuys, Hennie
Hopley, Christiaan
Toefy, Asma
Bilek, Nicole
Veldsman, Ashley
Hanekom, Willem A.
Johnson, John L.
Boom, W. Henry
Obermoser, Gerlinde
Huang, Huang
Hatherill, Mark
Lewinsohn, David M.
Nemes, Elisa
Scriba, Thomas J.
MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title_full MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title_fullStr MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title_full_unstemmed MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title_short MR1-Independent Activation of Human Mucosal-Associated Invariant T Cells by Mycobacteria
title_sort mr1-independent activation of human mucosal-associated invariant t cells by mycobacteria
topic Immunotherapy and Vaccines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6859375/
https://www.ncbi.nlm.nih.gov/pubmed/31611259
http://dx.doi.org/10.4049/jimmunol.1900674
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