Literature DB >> 31533031

TCR- or Cytokine-Activated CD8+ Mucosal-Associated Invariant T Cells Are Rapid Polyfunctional Effectors That Can Coordinate Immune Responses.

Rajesh Lamichhane1, Marion Schneider1, Sara M de la Harpe2, Thomas W R Harrop3, Rachel F Hannaway1, Peter K Dearden3, Joanna R Kirman1, Joel D A Tyndall2, Andrea J Vernall2, James E Ussher4.   

Abstract

Mucosal-associated invariant T (MAIT) cells can be activated via either their T cell receptor (TCR), which recognizes MR1-bound pyrimidines derived from microbial riboflavin biosynthesis, or via cytokines. These two modes of activation may act in concert or independently, depending upon the stimulus. It is unknown, however, how MAIT cell responses differ with the mode of activation. Here, we define transcriptional and effector responses of human CD8+ MAIT cells to TCR and cytokine stimulation. We report that MAIT cells rapidly respond to TCR stimulation, producing multiple cytokines and chemokines, altering their cytotoxic granule content and transcription factor expression, and upregulating co-stimulatory proteins. In contrast, cytokine-mediated activation is slower and results in a more limited response. Therefore, we propose that, in infections by riboflavin-synthesizing bacteria, MAIT cells play a key early role in effecting and coordinating immune responses, while in the absence of TCR stimulation, their role is likely to differ.
Copyright © 2019 The Author(s). Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  T cell receptor; activation; effector functions; interleukin-12; interleukin-18; mucosal-associated invariant T cells; transcription factors; transcriptome

Year:  2019        PMID: 31533031     DOI: 10.1016/j.celrep.2019.08.054

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  51 in total

1.  Efficient 5-OP-RU-Induced Enrichment of Mucosa-Associated Invariant T Cells in the Murine Lung Does Not Enhance Control of Aerosol Mycobacterium tuberculosis Infection.

Authors:  Charles Kyriakos Vorkas; Olivier Levy; Miroslav Skular; Kelin Li; Jeffrey Aubé; Michael S Glickman
Journal:  Infect Immun       Date:  2020-12-15       Impact factor: 3.441

2.  Multiomic analysis reveals decidual-specific transcriptional programing of MAIT cells.

Authors:  Jessica Vazquez; Melina Chavarria; Deborah A Chasman; Rene Welch Schwartz; Chanel T Tyler; Gladys Lopez; Rachel C Fisher; Irene M Ong; Aleksandar K Stanic
Journal:  Am J Reprod Immunol       Date:  2021-10-27       Impact factor: 3.886

3.  CD8 coreceptor engagement of MR1 enhances antigen responsiveness by human MAIT and other MR1-reactive T cells.

Authors:  Michael N T Souter; Wael Awad; Shihan Li; Troi J Pediongco; Bronwyn S Meehan; Lucy J Meehan; Zehua Tian; Zhe Zhao; Huimeng Wang; Adam Nelson; Jérôme Le Nours; Yogesh Khandokar; T Praveena; Jacinta Wubben; Jie Lin; Lucy C Sullivan; George O Lovrecz; Jeffrey Y W Mak; Ligong Liu; Lyudmila Kostenko; Katherine Kedzierska; Alexandra J Corbett; David P Fairlie; Andrew G Brooks; Nicholas A Gherardin; Adam P Uldrich; Zhenjun Chen; Jamie Rossjohn; Dale I Godfrey; James McCluskey; Daniel G Pellicci; Sidonia B G Eckle
Journal:  J Exp Med       Date:  2022-08-26       Impact factor: 17.579

Review 4.  γδ T, NKT, and MAIT Cells During Evolution: Redundancy or Specialized Functions?

Authors:  Christelle Harly; Jacques Robert; Francois Legoux; Olivier Lantz
Journal:  J Immunol       Date:  2022-07-15       Impact factor: 5.426

Review 5.  MAIT cells in liver inflammation and fibrosis.

Authors:  Hema Mehta; Martin Joseph Lett; Paul Klenerman; Magdalena Filipowicz Sinnreich
Journal:  Semin Immunopathol       Date:  2022-05-31       Impact factor: 11.759

6.  Mucosal-associated invariant T cells and Vδ2+ γδ T cells in community acquired pneumonia: association of abundance in sputum with clinical severity and outcome.

Authors:  R F Hannaway; X Wang; M Schneider; S Slow; J Cowan; B Brockway; M R Schofield; X C Morgan; D R Murdoch; J E Ussher
Journal:  Clin Exp Immunol       Date:  2019-10-24       Impact factor: 4.330

7.  MAIT cell activation is associated with disease severity markers in acute hantavirus infection.

Authors:  Kimia T Maleki; Johanna Tauriainen; Marina García; Priscilla F Kerkman; Wanda Christ; Joana Dias; Julia Wigren Byström; Edwin Leeansyah; Mattias N Forsell; Hans-Gustaf Ljunggren; Clas Ahlm; Niklas K Björkström; Johan K Sandberg; Jonas Klingström
Journal:  Cell Rep Med       Date:  2021-03-16

Review 8.  Myron Gordon Award paper: Microbes, T-cell diversity and pigmentation.

Authors:  I Caroline Le Poole
Journal:  Pigment Cell Melanoma Res       Date:  2021-01-27       Impact factor: 4.159

Review 9.  Mouse models illuminate MAIT cell biology.

Authors:  Huimeng Wang; Zhenjun Chen; James McCluskey; Alexandra J Corbett
Journal:  Mol Immunol       Date:  2020-12-22       Impact factor: 4.407

Review 10.  Monkeying around with MAIT Cells: Studying the Role of MAIT Cells in SIV and Mtb Co-Infection.

Authors:  Ryan V Moriarty; Amy L Ellis; Shelby L O'Connor
Journal:  Viruses       Date:  2021-05-08       Impact factor: 5.818

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