A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria.
Cerebral Malaria (CM) is associated with a pathogenic T cell response. Mice infected by P. berghei ANKA clone 1.49 (PbA) developing CM (CM+) present an altered PBL TCR repertoire, partly due to recurrently expanded T cell clones, as compared to non-infected and CM- infected mice. To analyse the rela...
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doaj-685e1d37379643249d5f328d5f7f28a82020-11-24T21:39:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01112e014787110.1371/journal.pone.0147871A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria.Encarnita Mariotti-FerrandizHang-Phuong PhamSophie DulauroyOlivier GorgetteDavid KlatzmannPierre-André CazenaveSylviane PiedAdrien SixCerebral Malaria (CM) is associated with a pathogenic T cell response. Mice infected by P. berghei ANKA clone 1.49 (PbA) developing CM (CM+) present an altered PBL TCR repertoire, partly due to recurrently expanded T cell clones, as compared to non-infected and CM- infected mice. To analyse the relationship between repertoire alteration and CM, we performed a kinetic analysis of the TRBV repertoire during the course of the infection until CM-related death in PbA-infected mice. The repertoires of PBL, splenocytes and brain lymphocytes were compared between infected and non-infected mice using a high-throughput CDR3 spectratyping method. We observed a modification of the whole TCR repertoire in the spleen and blood of infected mice, from the fifth and the sixth day post-infection, respectively, while only three TRBV were significantly perturbed in the brain of infected mice. Using multivariate analysis and statistical modelling, we identified a unique TCRβ signature discriminating CM+ from CTR mice, enriched during the course of the infection in the spleen and the blood and predicting CM onset. These results highlight a dynamic modification and compartmentalization of the TCR diversity during the course of PbA infection, and provide a novel method to identify disease-associated TCRβ signature as diagnostic and prognostic biomarkers.http://europepmc.org/articles/PMC4742225?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Encarnita Mariotti-Ferrandiz Hang-Phuong Pham Sophie Dulauroy Olivier Gorgette David Klatzmann Pierre-André Cazenave Sylviane Pied Adrien Six |
spellingShingle |
Encarnita Mariotti-Ferrandiz Hang-Phuong Pham Sophie Dulauroy Olivier Gorgette David Klatzmann Pierre-André Cazenave Sylviane Pied Adrien Six A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. PLoS ONE |
author_facet |
Encarnita Mariotti-Ferrandiz Hang-Phuong Pham Sophie Dulauroy Olivier Gorgette David Klatzmann Pierre-André Cazenave Sylviane Pied Adrien Six |
author_sort |
Encarnita Mariotti-Ferrandiz |
title |
A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. |
title_short |
A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. |
title_full |
A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. |
title_fullStr |
A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. |
title_full_unstemmed |
A TCRβ Repertoire Signature Can Predict Experimental Cerebral Malaria. |
title_sort |
tcrβ repertoire signature can predict experimental cerebral malaria. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2016-01-01 |
description |
Cerebral Malaria (CM) is associated with a pathogenic T cell response. Mice infected by P. berghei ANKA clone 1.49 (PbA) developing CM (CM+) present an altered PBL TCR repertoire, partly due to recurrently expanded T cell clones, as compared to non-infected and CM- infected mice. To analyse the relationship between repertoire alteration and CM, we performed a kinetic analysis of the TRBV repertoire during the course of the infection until CM-related death in PbA-infected mice. The repertoires of PBL, splenocytes and brain lymphocytes were compared between infected and non-infected mice using a high-throughput CDR3 spectratyping method. We observed a modification of the whole TCR repertoire in the spleen and blood of infected mice, from the fifth and the sixth day post-infection, respectively, while only three TRBV were significantly perturbed in the brain of infected mice. Using multivariate analysis and statistical modelling, we identified a unique TCRβ signature discriminating CM+ from CTR mice, enriched during the course of the infection in the spleen and the blood and predicting CM onset. These results highlight a dynamic modification and compartmentalization of the TCR diversity during the course of PbA infection, and provide a novel method to identify disease-associated TCRβ signature as diagnostic and prognostic biomarkers. |
url |
http://europepmc.org/articles/PMC4742225?pdf=render |
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