CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis
CXCL4 is an inflammatory chemokine signaling through CXCR3 receptor. Here the authors show a CXCR3-independent function of CXCL4: it forms liquid crystals with DNA, potentiating mammalian and bacterial DNA recognition by TLR9, thereby amplifying interferon-a production in systemic sclerosis.
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Nature Portfolio
2019
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oai:doaj.org-article:a467d41eb1b041d3bfc13521f62a91e82021-12-02T15:35:55ZCXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis10.1038/s41467-019-09683-z2041-1723https://doaj.org/article/a467d41eb1b041d3bfc13521f62a91e82019-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09683-zhttps://doaj.org/toc/2041-1723CXCL4 is an inflammatory chemokine signaling through CXCR3 receptor. Here the authors show a CXCR3-independent function of CXCL4: it forms liquid crystals with DNA, potentiating mammalian and bacterial DNA recognition by TLR9, thereby amplifying interferon-a production in systemic sclerosis.Roberto LandeErnest Y. LeeRaffaella PalazzoBarbara MarinariImmacolata PietraforteGiancarlo Santiago SantosYves MattenbergerFrancesca SpadaroKatia StefanantoniNicoletta IannaceAleksandra Maria DufourMario FalchiManuela BiancoElisabetta BottiLuca BianchiMontserrat AlvarezValeria RiccieriMarie-Elise TruchetetGerard C.L. WongCarlo ChizzoliniLoredana FrascaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019) |
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Science Q Roberto Lande Ernest Y. Lee Raffaella Palazzo Barbara Marinari Immacolata Pietraforte Giancarlo Santiago Santos Yves Mattenberger Francesca Spadaro Katia Stefanantoni Nicoletta Iannace Aleksandra Maria Dufour Mario Falchi Manuela Bianco Elisabetta Botti Luca Bianchi Montserrat Alvarez Valeria Riccieri Marie-Elise Truchetet Gerard C.L. Wong Carlo Chizzolini Loredana Frasca CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
description |
CXCL4 is an inflammatory chemokine signaling through CXCR3 receptor. Here the authors show a CXCR3-independent function of CXCL4: it forms liquid crystals with DNA, potentiating mammalian and bacterial DNA recognition by TLR9, thereby amplifying interferon-a production in systemic sclerosis. |
format |
article |
author |
Roberto Lande Ernest Y. Lee Raffaella Palazzo Barbara Marinari Immacolata Pietraforte Giancarlo Santiago Santos Yves Mattenberger Francesca Spadaro Katia Stefanantoni Nicoletta Iannace Aleksandra Maria Dufour Mario Falchi Manuela Bianco Elisabetta Botti Luca Bianchi Montserrat Alvarez Valeria Riccieri Marie-Elise Truchetet Gerard C.L. Wong Carlo Chizzolini Loredana Frasca |
author_facet |
Roberto Lande Ernest Y. Lee Raffaella Palazzo Barbara Marinari Immacolata Pietraforte Giancarlo Santiago Santos Yves Mattenberger Francesca Spadaro Katia Stefanantoni Nicoletta Iannace Aleksandra Maria Dufour Mario Falchi Manuela Bianco Elisabetta Botti Luca Bianchi Montserrat Alvarez Valeria Riccieri Marie-Elise Truchetet Gerard C.L. Wong Carlo Chizzolini Loredana Frasca |
author_sort |
Roberto Lande |
title |
CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
title_short |
CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
title_full |
CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
title_fullStr |
CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
title_full_unstemmed |
CXCL4 assembles DNA into liquid crystalline complexes to amplify TLR9-mediated interferon-α production in systemic sclerosis |
title_sort |
cxcl4 assembles dna into liquid crystalline complexes to amplify tlr9-mediated interferon-α production in systemic sclerosis |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/a467d41eb1b041d3bfc13521f62a91e8 |
work_keys_str_mv |
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