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TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA

DNA sequences purified from distinct organisms, e.g. non vertebrate versus vertebrate ones, were shown to differ in their TLR9 signalling properties especially when either mouse bone marrow-derived- or human dendritic cells (DCs) are probed as target cells. Here we found that the DC-targeting immuno...

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Autores principales: Khan, Mélissa Erin, Borde, Chloé, Rocha, Eduardo P.C., Mériaux, Véronique, Maréchal, Vincent, Escoll, Pedro, Goyard, Sophie, Cavaillon, Jean-Marc, Manoury, Bénédicte, Doyen, Noëlle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4230925/
https://www.ncbi.nlm.nih.gov/pubmed/25392997
http://dx.doi.org/10.1371/journal.pntd.0003308
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author Khan, Mélissa Erin
Borde, Chloé
Rocha, Eduardo P.C.
Mériaux, Véronique
Maréchal, Vincent
Escoll, Pedro
Goyard, Sophie
Cavaillon, Jean-Marc
Manoury, Bénédicte
Doyen, Noëlle
author_facet Khan, Mélissa Erin
Borde, Chloé
Rocha, Eduardo P.C.
Mériaux, Véronique
Maréchal, Vincent
Escoll, Pedro
Goyard, Sophie
Cavaillon, Jean-Marc
Manoury, Bénédicte
Doyen, Noëlle
author_sort Khan, Mélissa Erin
collection PubMed
description DNA sequences purified from distinct organisms, e.g. non vertebrate versus vertebrate ones, were shown to differ in their TLR9 signalling properties especially when either mouse bone marrow-derived- or human dendritic cells (DCs) are probed as target cells. Here we found that the DC-targeting immunostimulatory property of Leishmania major DNA is shared by other Trypanosomatidae DNA, suggesting that this is a general trait of these eukaryotic single-celled parasites. We first documented, in vitro, that the low level of immunostimulatory activity by vertebrate DNA is not due to its limited access to DCs' TLR9. In addition, vertebrate DNA inhibits the activation induced by the parasite DNA. This inhibition could result from the presence of competing elements for TLR9 activation and suggests that DNA from different species can be discriminated by mouse and human DCs. Second, using computational analysis of genomic DNA sequences, it was possible to detect the presence of over-represented inhibitory and under-represented stimulatory sequences in the vertebrate genomes, whereas L. major genome displays the opposite trend. Interestingly, this contrasting features between L. major and vertebrate genomes in the frequency of these motifs are shared by other Trypanosomatidae genomes (Trypanosoma cruzi, brucei and vivax). We also addressed the possibility that proteins expressed in DCs could interact with DNA and promote TLR9 activation. We found that TLR9 is specifically activated with L. major HMGB1-bound DNA and that HMGB1 preferentially binds to L. major compared to mouse DNA. Our results highlight that both DNA sequence and vertebrate DNA-binding proteins, such as the mouse HMGB1, allow the TLR9-signaling to be initiated and achieved by Trypanosomatidae DNA.
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spelling pubmed-42309252014-11-18 TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA Khan, Mélissa Erin Borde, Chloé Rocha, Eduardo P.C. Mériaux, Véronique Maréchal, Vincent Escoll, Pedro Goyard, Sophie Cavaillon, Jean-Marc Manoury, Bénédicte Doyen, Noëlle PLoS Negl Trop Dis Research Article DNA sequences purified from distinct organisms, e.g. non vertebrate versus vertebrate ones, were shown to differ in their TLR9 signalling properties especially when either mouse bone marrow-derived- or human dendritic cells (DCs) are probed as target cells. Here we found that the DC-targeting immunostimulatory property of Leishmania major DNA is shared by other Trypanosomatidae DNA, suggesting that this is a general trait of these eukaryotic single-celled parasites. We first documented, in vitro, that the low level of immunostimulatory activity by vertebrate DNA is not due to its limited access to DCs' TLR9. In addition, vertebrate DNA inhibits the activation induced by the parasite DNA. This inhibition could result from the presence of competing elements for TLR9 activation and suggests that DNA from different species can be discriminated by mouse and human DCs. Second, using computational analysis of genomic DNA sequences, it was possible to detect the presence of over-represented inhibitory and under-represented stimulatory sequences in the vertebrate genomes, whereas L. major genome displays the opposite trend. Interestingly, this contrasting features between L. major and vertebrate genomes in the frequency of these motifs are shared by other Trypanosomatidae genomes (Trypanosoma cruzi, brucei and vivax). We also addressed the possibility that proteins expressed in DCs could interact with DNA and promote TLR9 activation. We found that TLR9 is specifically activated with L. major HMGB1-bound DNA and that HMGB1 preferentially binds to L. major compared to mouse DNA. Our results highlight that both DNA sequence and vertebrate DNA-binding proteins, such as the mouse HMGB1, allow the TLR9-signaling to be initiated and achieved by Trypanosomatidae DNA. Public Library of Science 2014-11-13 /pmc/articles/PMC4230925/ /pubmed/25392997 http://dx.doi.org/10.1371/journal.pntd.0003308 Text en © 2014 Khan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Khan, Mélissa Erin
Borde, Chloé
Rocha, Eduardo P.C.
Mériaux, Véronique
Maréchal, Vincent
Escoll, Pedro
Goyard, Sophie
Cavaillon, Jean-Marc
Manoury, Bénédicte
Doyen, Noëlle
TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title_full TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title_fullStr TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title_full_unstemmed TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title_short TLR9 Activation Is Triggered by the Excess of Stimulatory versus Inhibitory Motifs Present in Trypanosomatidae DNA
title_sort tlr9 activation is triggered by the excess of stimulatory versus inhibitory motifs present in trypanosomatidae dna
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4230925/
https://www.ncbi.nlm.nih.gov/pubmed/25392997
http://dx.doi.org/10.1371/journal.pntd.0003308
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