Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.

The lungs are a noted predilection site of acute, latent, and reactivated cytomegalovirus (CMV) infections. Interstitial pneumonia is the most dreaded manifestation of CMV disease in the immunocompromised host, whereas in the immunocompetent host lung-infiltrating CD8 T cells confine the infection i...

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Main Authors: Stefan Ebert, Marc Becker, Niels A W Lemmermann, Julia K Büttner, Anastasija Michel, Christian Taube, Jürgen Podlech, Verena Böhm, Kirsten Freitag, Doris Thomas, Rafaela Holtappels, Matthias J Reddehase, Michael Stassen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-04-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC3999167?pdf=render
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spelling doaj-646b8fa77a5e4b9eaaf9743aa8e8fb922020-11-25T01:34:04ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742014-04-01104e100410010.1371/journal.ppat.1004100Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.Stefan EbertMarc BeckerNiels A W LemmermannJulia K BüttnerAnastasija MichelChristian TaubeJürgen PodlechVerena BöhmKirsten FreitagDoris ThomasRafaela HoltappelsMatthias J ReddehaseMichael StassenThe lungs are a noted predilection site of acute, latent, and reactivated cytomegalovirus (CMV) infections. Interstitial pneumonia is the most dreaded manifestation of CMV disease in the immunocompromised host, whereas in the immunocompetent host lung-infiltrating CD8 T cells confine the infection in nodular inflammatory foci and prevent viral pathology. By using murine CMV infection as a model, we provide evidence for a critical role of mast cells (MC) in the recruitment of protective CD8 T cells to the lungs. Systemic infection triggered degranulation selectively in infected MC. The viral activation of MC was associated with a wave of CC chemokine ligand 5 (CCL5) in the serum of C57BL/6 mice that was MC-derived as verified by infection of MC-deficient Kit(W-sh/W-sh) "sash" mutants. In these mutants, CD8 T cells were recruited less efficiently to the lungs, correlating with enhanced viral replication and delayed virus clearance. A causative role for MC was verified by MC reconstitution of "sash" mice restoring both, efficient CD8 T-cell recruitment and infection control. These results reveal a novel crosstalk axis between innate and adaptive immune defense against CMV, and identify MC as a hitherto unconsidered player in the immune surveillance at a relevant site of CMV disease.http://europepmc.org/articles/PMC3999167?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Stefan Ebert
Marc Becker
Niels A W Lemmermann
Julia K Büttner
Anastasija Michel
Christian Taube
Jürgen Podlech
Verena Böhm
Kirsten Freitag
Doris Thomas
Rafaela Holtappels
Matthias J Reddehase
Michael Stassen
spellingShingle Stefan Ebert
Marc Becker
Niels A W Lemmermann
Julia K Büttner
Anastasija Michel
Christian Taube
Jürgen Podlech
Verena Böhm
Kirsten Freitag
Doris Thomas
Rafaela Holtappels
Matthias J Reddehase
Michael Stassen
Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
PLoS Pathogens
author_facet Stefan Ebert
Marc Becker
Niels A W Lemmermann
Julia K Büttner
Anastasija Michel
Christian Taube
Jürgen Podlech
Verena Böhm
Kirsten Freitag
Doris Thomas
Rafaela Holtappels
Matthias J Reddehase
Michael Stassen
author_sort Stefan Ebert
title Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
title_short Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
title_full Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
title_fullStr Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
title_full_unstemmed Mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective CD8 T cells to the lungs.
title_sort mast cells expedite control of pulmonary murine cytomegalovirus infection by enhancing the recruitment of protective cd8 t cells to the lungs.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2014-04-01
description The lungs are a noted predilection site of acute, latent, and reactivated cytomegalovirus (CMV) infections. Interstitial pneumonia is the most dreaded manifestation of CMV disease in the immunocompromised host, whereas in the immunocompetent host lung-infiltrating CD8 T cells confine the infection in nodular inflammatory foci and prevent viral pathology. By using murine CMV infection as a model, we provide evidence for a critical role of mast cells (MC) in the recruitment of protective CD8 T cells to the lungs. Systemic infection triggered degranulation selectively in infected MC. The viral activation of MC was associated with a wave of CC chemokine ligand 5 (CCL5) in the serum of C57BL/6 mice that was MC-derived as verified by infection of MC-deficient Kit(W-sh/W-sh) "sash" mutants. In these mutants, CD8 T cells were recruited less efficiently to the lungs, correlating with enhanced viral replication and delayed virus clearance. A causative role for MC was verified by MC reconstitution of "sash" mice restoring both, efficient CD8 T-cell recruitment and infection control. These results reveal a novel crosstalk axis between innate and adaptive immune defense against CMV, and identify MC as a hitherto unconsidered player in the immune surveillance at a relevant site of CMV disease.
url http://europepmc.org/articles/PMC3999167?pdf=render
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