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Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production

Activation of TLR7 by small imidazoquinoline molecules such as R848 or R837 initiates signaling cascades leading to the activation of transcription factors, such as AP-1, NF-κB, and interferon regulatory factors (IRFs) and afterward to the induction of cytokines and anti-viral Type I IFNs. In genera...

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Autores principales: Leszczyńska, Ewa, Makuch, Edyta, Mitkiewicz, Małgorzata, Jasyk, Izabella, Narita, Miwako, Górska, Sabina, Lipiński, Tomasz, Siednienko, Jakub
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727842/
https://www.ncbi.nlm.nih.gov/pubmed/33255528
http://dx.doi.org/10.3390/ijms21238925
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author Leszczyńska, Ewa
Makuch, Edyta
Mitkiewicz, Małgorzata
Jasyk, Izabella
Narita, Miwako
Górska, Sabina
Lipiński, Tomasz
Siednienko, Jakub
author_facet Leszczyńska, Ewa
Makuch, Edyta
Mitkiewicz, Małgorzata
Jasyk, Izabella
Narita, Miwako
Górska, Sabina
Lipiński, Tomasz
Siednienko, Jakub
author_sort Leszczyńska, Ewa
collection PubMed
description Activation of TLR7 by small imidazoquinoline molecules such as R848 or R837 initiates signaling cascades leading to the activation of transcription factors, such as AP-1, NF-κB, and interferon regulatory factors (IRFs) and afterward to the induction of cytokines and anti-viral Type I IFNs. In general, TLRs mediate these effects by utilizing different intracellular signaling molecules, one of them is Mal. Mal is a protein closely related to the antibacterial response, and its role in the TLR7 pathways remains poorly understood. In this study, we show that Mal determines the expression and secretion of IFNβ following activation of TLR7, a receptor that recognizes ssRNA and imidazoquinolines. Moreover, we observed that R848 induces Mal-dependent IFNβ production via ERK1/2 activation as well as the transcription factor IRF7 activation. Although activation of TLR7 leads to NF-κB-dependent expression of IRF7, this process is independent of Mal. We also demonstrate that secretion of IFNβ regulated by TLR7 and Mal in macrophages and dendritic cells leads to the IP-10 chemokine expression. In conclusion, our data demonstrate that Mal is a critical regulator of the imidazoquinolinones-dependent IFNβ production via ERK1/2/IRF7 signaling cascade which brings us closer to understanding the molecular mechanism’s regulation of innate immune response.
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spelling pubmed-77278422020-12-11 Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production Leszczyńska, Ewa Makuch, Edyta Mitkiewicz, Małgorzata Jasyk, Izabella Narita, Miwako Górska, Sabina Lipiński, Tomasz Siednienko, Jakub Int J Mol Sci Article Activation of TLR7 by small imidazoquinoline molecules such as R848 or R837 initiates signaling cascades leading to the activation of transcription factors, such as AP-1, NF-κB, and interferon regulatory factors (IRFs) and afterward to the induction of cytokines and anti-viral Type I IFNs. In general, TLRs mediate these effects by utilizing different intracellular signaling molecules, one of them is Mal. Mal is a protein closely related to the antibacterial response, and its role in the TLR7 pathways remains poorly understood. In this study, we show that Mal determines the expression and secretion of IFNβ following activation of TLR7, a receptor that recognizes ssRNA and imidazoquinolines. Moreover, we observed that R848 induces Mal-dependent IFNβ production via ERK1/2 activation as well as the transcription factor IRF7 activation. Although activation of TLR7 leads to NF-κB-dependent expression of IRF7, this process is independent of Mal. We also demonstrate that secretion of IFNβ regulated by TLR7 and Mal in macrophages and dendritic cells leads to the IP-10 chemokine expression. In conclusion, our data demonstrate that Mal is a critical regulator of the imidazoquinolinones-dependent IFNβ production via ERK1/2/IRF7 signaling cascade which brings us closer to understanding the molecular mechanism’s regulation of innate immune response. MDPI 2020-11-25 /pmc/articles/PMC7727842/ /pubmed/33255528 http://dx.doi.org/10.3390/ijms21238925 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Leszczyńska, Ewa
Makuch, Edyta
Mitkiewicz, Małgorzata
Jasyk, Izabella
Narita, Miwako
Górska, Sabina
Lipiński, Tomasz
Siednienko, Jakub
Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title_full Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title_fullStr Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title_full_unstemmed Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title_short Absence of Mal/TIRAP Results in Abrogated Imidazoquinolinones-Dependent Activation of IRF7 and Suppressed IFNβ and IFN-I Activated Gene Production
title_sort absence of mal/tirap results in abrogated imidazoquinolinones-dependent activation of irf7 and suppressed ifnβ and ifn-i activated gene production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727842/
https://www.ncbi.nlm.nih.gov/pubmed/33255528
http://dx.doi.org/10.3390/ijms21238925
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