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Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains

Vaccines that confer protection through induction of adaptive T-cell immunity rely on understanding T-cell epitope (TCE) evolution induced by immune escape. This is poorly understood in tuberculosis (TB), an ancient, chronic disease, where CD4 T-cell immunity is of recognized importance. We probed 9...

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Autores principales: Ramaiah, Arunachalam, Nayak, Soumya, Rakshit, Srabanti, Manson, Abigail L., Abeel, Thomas, Shanmugam, Sivakumar, Sahoo, Pravat Nalini, John, Anto Jesuraj Uday Kumar, Sundaramurthi, Jagadish Chandrabose, Narayanan, Sujatha, D'Souza, George, von Hoegen, Paul, Ottenhoff, Tom H. M., Swaminathan, Soumya, Earl, Ashlee M., Vyakarnam, Annapurna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6381025/
https://www.ncbi.nlm.nih.gov/pubmed/30814998
http://dx.doi.org/10.3389/fimmu.2019.00195
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author Ramaiah, Arunachalam
Nayak, Soumya
Rakshit, Srabanti
Manson, Abigail L.
Abeel, Thomas
Shanmugam, Sivakumar
Sahoo, Pravat Nalini
John, Anto Jesuraj Uday Kumar
Sundaramurthi, Jagadish Chandrabose
Narayanan, Sujatha
D'Souza, George
von Hoegen, Paul
Ottenhoff, Tom H. M.
Swaminathan, Soumya
Earl, Ashlee M.
Vyakarnam, Annapurna
author_facet Ramaiah, Arunachalam
Nayak, Soumya
Rakshit, Srabanti
Manson, Abigail L.
Abeel, Thomas
Shanmugam, Sivakumar
Sahoo, Pravat Nalini
John, Anto Jesuraj Uday Kumar
Sundaramurthi, Jagadish Chandrabose
Narayanan, Sujatha
D'Souza, George
von Hoegen, Paul
Ottenhoff, Tom H. M.
Swaminathan, Soumya
Earl, Ashlee M.
Vyakarnam, Annapurna
author_sort Ramaiah, Arunachalam
collection PubMed
description Vaccines that confer protection through induction of adaptive T-cell immunity rely on understanding T-cell epitope (TCE) evolution induced by immune escape. This is poorly understood in tuberculosis (TB), an ancient, chronic disease, where CD4 T-cell immunity is of recognized importance. We probed 905 functionally validated, curated human CD4 T cell epitopes in 79 Mycobacterium tuberculosis (Mtb) whole genomes from India. This screen resulted in identifying 64 mutated epitopes in these strains initially using a computational pipeline and subsequently verified by single nucleotide polymorphism (SNP) analysis. SNP based phylogeny revealed the 79 Mtb strains to cluster to East African Indian (EAI), Central Asian Strain (CAS), and Beijing (BEI) lineages. Eighty-nine percent of the mutated T-cell epitopes (mTCEs) identified in the 79 Mtb strains from India has not previously been reported. These mTCEs were encoded by genes with high nucleotide diversity scores including seven mTCEs encoded by six antigens in the top 10% of rapidly divergent Mtb genes encoded by these strains. Using a T cell functional assay readout, we demonstrate 62% of mTCEs tested to significantly alter CD4 T-cell IFNγ and/or IL2 secretion with associated changes in predicted HLA-DR binding affinity: the gain of function mutations displayed higher predicted HLA-DR binding affinity and conversely mutations resulting in loss of function displayed lower predicted HLA-DR binding affinity. Most mutated antigens belonged to the cell wall/cell processes, and, intermediary metabolism and respiration families though all known Mtb proteins encoded mutations. Analysis of the mTCEs in an SNP database of 5,310 global Mtb strains identified 82% mTCEs to be significantly more prevalent in Mtb strains isolated from India, including 36 mTCEs identified exclusively in strains from India. These epitopes had a significantly higher predicted binding affinity to HLA-DR alleles that were highly prevalent in India compared to HLA-DR alleles rare in India, highlighting HLA-DR maybe an important driver of these mutations. This first evidence of region-specific TCE mutations potentially employed by Mtb to escape host immunity has important implications for TB vaccine design.
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spelling pubmed-63810252019-02-27 Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains Ramaiah, Arunachalam Nayak, Soumya Rakshit, Srabanti Manson, Abigail L. Abeel, Thomas Shanmugam, Sivakumar Sahoo, Pravat Nalini John, Anto Jesuraj Uday Kumar Sundaramurthi, Jagadish Chandrabose Narayanan, Sujatha D'Souza, George von Hoegen, Paul Ottenhoff, Tom H. M. Swaminathan, Soumya Earl, Ashlee M. Vyakarnam, Annapurna Front Immunol Immunology Vaccines that confer protection through induction of adaptive T-cell immunity rely on understanding T-cell epitope (TCE) evolution induced by immune escape. This is poorly understood in tuberculosis (TB), an ancient, chronic disease, where CD4 T-cell immunity is of recognized importance. We probed 905 functionally validated, curated human CD4 T cell epitopes in 79 Mycobacterium tuberculosis (Mtb) whole genomes from India. This screen resulted in identifying 64 mutated epitopes in these strains initially using a computational pipeline and subsequently verified by single nucleotide polymorphism (SNP) analysis. SNP based phylogeny revealed the 79 Mtb strains to cluster to East African Indian (EAI), Central Asian Strain (CAS), and Beijing (BEI) lineages. Eighty-nine percent of the mutated T-cell epitopes (mTCEs) identified in the 79 Mtb strains from India has not previously been reported. These mTCEs were encoded by genes with high nucleotide diversity scores including seven mTCEs encoded by six antigens in the top 10% of rapidly divergent Mtb genes encoded by these strains. Using a T cell functional assay readout, we demonstrate 62% of mTCEs tested to significantly alter CD4 T-cell IFNγ and/or IL2 secretion with associated changes in predicted HLA-DR binding affinity: the gain of function mutations displayed higher predicted HLA-DR binding affinity and conversely mutations resulting in loss of function displayed lower predicted HLA-DR binding affinity. Most mutated antigens belonged to the cell wall/cell processes, and, intermediary metabolism and respiration families though all known Mtb proteins encoded mutations. Analysis of the mTCEs in an SNP database of 5,310 global Mtb strains identified 82% mTCEs to be significantly more prevalent in Mtb strains isolated from India, including 36 mTCEs identified exclusively in strains from India. These epitopes had a significantly higher predicted binding affinity to HLA-DR alleles that were highly prevalent in India compared to HLA-DR alleles rare in India, highlighting HLA-DR maybe an important driver of these mutations. This first evidence of region-specific TCE mutations potentially employed by Mtb to escape host immunity has important implications for TB vaccine design. Frontiers Media S.A. 2019-02-13 /pmc/articles/PMC6381025/ /pubmed/30814998 http://dx.doi.org/10.3389/fimmu.2019.00195 Text en Copyright © 2019 Ramaiah, Nayak, Rakshit, Manson, Abeel, Shanmugam, Sahoo, John, Sundaramurthi, Narayanan, D'Souza, von Hoegen, Ottenhoff, Swaminathan, Earl and Vyakarnam. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Ramaiah, Arunachalam
Nayak, Soumya
Rakshit, Srabanti
Manson, Abigail L.
Abeel, Thomas
Shanmugam, Sivakumar
Sahoo, Pravat Nalini
John, Anto Jesuraj Uday Kumar
Sundaramurthi, Jagadish Chandrabose
Narayanan, Sujatha
D'Souza, George
von Hoegen, Paul
Ottenhoff, Tom H. M.
Swaminathan, Soumya
Earl, Ashlee M.
Vyakarnam, Annapurna
Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title_full Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title_fullStr Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title_full_unstemmed Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title_short Evidence for Highly Variable, Region-Specific Patterns of T-Cell Epitope Mutations Accumulating in Mycobacterium tuberculosis Strains
title_sort evidence for highly variable, region-specific patterns of t-cell epitope mutations accumulating in mycobacterium tuberculosis strains
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6381025/
https://www.ncbi.nlm.nih.gov/pubmed/30814998
http://dx.doi.org/10.3389/fimmu.2019.00195
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