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Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan

Mycobacterium tuberculosis (Mtb) cell wall glycolipid mannose‐capped lipoarabinomannan (ManLAM) inhibits CD4(+) T‐cell activation by inhibiting proximal T‐cell receptor (TCR) signaling when activated by anti‐CD3. To understand the impact of ManLAM on CD4(+) T‐cell function when both the TCR–CD3 comp...

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Autores principales: Karim, Ahmad F., Sande, Obondo J., Tomechko, Sara E., Ding, Xuedong, Li, Ming, Maxwell, Sean, Ewing, Rob M., Harding, Clifford V., Rojas, Roxana E., Chance, Mark R., Boom, W. Henry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5725663/
https://www.ncbi.nlm.nih.gov/pubmed/28994205
http://dx.doi.org/10.1002/pmic.201700233
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author Karim, Ahmad F.
Sande, Obondo J.
Tomechko, Sara E.
Ding, Xuedong
Li, Ming
Maxwell, Sean
Ewing, Rob M.
Harding, Clifford V.
Rojas, Roxana E.
Chance, Mark R.
Boom, W. Henry
author_facet Karim, Ahmad F.
Sande, Obondo J.
Tomechko, Sara E.
Ding, Xuedong
Li, Ming
Maxwell, Sean
Ewing, Rob M.
Harding, Clifford V.
Rojas, Roxana E.
Chance, Mark R.
Boom, W. Henry
author_sort Karim, Ahmad F.
collection PubMed
description Mycobacterium tuberculosis (Mtb) cell wall glycolipid mannose‐capped lipoarabinomannan (ManLAM) inhibits CD4(+) T‐cell activation by inhibiting proximal T‐cell receptor (TCR) signaling when activated by anti‐CD3. To understand the impact of ManLAM on CD4(+) T‐cell function when both the TCR–CD3 complex and major costimulator CD28 are engaged, we performed label‐free quantitative MS and network analysis. Mixed‐effect model analysis of peptide intensity identified 149 unique peptides representing 131 proteins that were differentially regulated by ManLAM in anti‐CD3‐ and anti‐CD28‐activated CD4(+) T cells. Crosstalker, a novel network analysis tool identified dysregulated translation, TCA cycle, and RNA metabolism network modules. PCNA, Akt, mTOR, and UBC were found to be bridge node proteins connecting these modules of dysregulated proteins. Altered PCNA expression and cell cycle analysis showed arrest at the G2M phase. Western blot confirmed that ManLAM inhibited Akt and mTOR phosphorylation, and decreased expression of deubiquitinating enzymes Usp9x and Otub1. Decreased NF‐κB phosphorylation suggested interference with CD28 signaling through inhibition of the Usp9x‐Akt‐mTOR pathway. Thus, ManLAM induced global changes in the CD4(+) T‐cell proteome by affecting Akt‐mTOR signaling, resulting in broad functional impairment of CD4(+) T‐cell activation beyond inhibition of proximal TCR–CD3 signaling.
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spelling pubmed-57256632017-12-12 Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan Karim, Ahmad F. Sande, Obondo J. Tomechko, Sara E. Ding, Xuedong Li, Ming Maxwell, Sean Ewing, Rob M. Harding, Clifford V. Rojas, Roxana E. Chance, Mark R. Boom, W. Henry Proteomics Systems Biology Mycobacterium tuberculosis (Mtb) cell wall glycolipid mannose‐capped lipoarabinomannan (ManLAM) inhibits CD4(+) T‐cell activation by inhibiting proximal T‐cell receptor (TCR) signaling when activated by anti‐CD3. To understand the impact of ManLAM on CD4(+) T‐cell function when both the TCR–CD3 complex and major costimulator CD28 are engaged, we performed label‐free quantitative MS and network analysis. Mixed‐effect model analysis of peptide intensity identified 149 unique peptides representing 131 proteins that were differentially regulated by ManLAM in anti‐CD3‐ and anti‐CD28‐activated CD4(+) T cells. Crosstalker, a novel network analysis tool identified dysregulated translation, TCA cycle, and RNA metabolism network modules. PCNA, Akt, mTOR, and UBC were found to be bridge node proteins connecting these modules of dysregulated proteins. Altered PCNA expression and cell cycle analysis showed arrest at the G2M phase. Western blot confirmed that ManLAM inhibited Akt and mTOR phosphorylation, and decreased expression of deubiquitinating enzymes Usp9x and Otub1. Decreased NF‐κB phosphorylation suggested interference with CD28 signaling through inhibition of the Usp9x‐Akt‐mTOR pathway. Thus, ManLAM induced global changes in the CD4(+) T‐cell proteome by affecting Akt‐mTOR signaling, resulting in broad functional impairment of CD4(+) T‐cell activation beyond inhibition of proximal TCR–CD3 signaling. John Wiley and Sons Inc. 2017-11-21 2017-11 /pmc/articles/PMC5725663/ /pubmed/28994205 http://dx.doi.org/10.1002/pmic.201700233 Text en © 2017 The Authors, Proteomics Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Systems Biology
Karim, Ahmad F.
Sande, Obondo J.
Tomechko, Sara E.
Ding, Xuedong
Li, Ming
Maxwell, Sean
Ewing, Rob M.
Harding, Clifford V.
Rojas, Roxana E.
Chance, Mark R.
Boom, W. Henry
Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title_full Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title_fullStr Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title_full_unstemmed Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title_short Proteomics and Network Analyses Reveal Inhibition of Akt‐mTOR Signaling in CD4(+) T Cells by Mycobacterium tuberculosis Mannose‐Capped Lipoarabinomannan
title_sort proteomics and network analyses reveal inhibition of akt‐mtor signaling in cd4(+) t cells by mycobacterium tuberculosis mannose‐capped lipoarabinomannan
topic Systems Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5725663/
https://www.ncbi.nlm.nih.gov/pubmed/28994205
http://dx.doi.org/10.1002/pmic.201700233
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