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Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation
To fulfil its orchestration of immune cell trafficking, a network of chemokines and receptors developed that capitalizes on specificity, redundancy, and functional selectivity. The discovery of heteromeric interactions in the chemokine interactome has expanded the complexity within this network. Mor...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer International Publishing
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9468113/ https://www.ncbi.nlm.nih.gov/pubmed/36094626 http://dx.doi.org/10.1007/s00018-022-04539-0 |
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author | Brandhofer, Markus Hoffmann, Adrian Blanchet, Xavier Siminkovitch, Elena Rohlfing, Anne-Katrin El Bounkari, Omar Nestele, Jeremy A. Bild, Alexander Kontos, Christos Hille, Kathleen Rohde, Vanessa Fröhlich, Adrian Golemi, Jona Gokce, Ozgun Krammer, Christine Scheiermann, Patrick Tsilimparis, Nikolaos Sachs, Nadja Kempf, Wolfgang E. Maegdefessel, Lars Otabil, Michael K. Megens, Remco T. A. Ippel, Hans Koenen, Rory R. Luo, Junfu Engelmann, Bernd Mayo, Kevin H. Gawaz, Meinrad Kapurniotu, Aphrodite Weber, Christian von Hundelshausen, Philipp Bernhagen, Jürgen |
author_facet | Brandhofer, Markus Hoffmann, Adrian Blanchet, Xavier Siminkovitch, Elena Rohlfing, Anne-Katrin El Bounkari, Omar Nestele, Jeremy A. Bild, Alexander Kontos, Christos Hille, Kathleen Rohde, Vanessa Fröhlich, Adrian Golemi, Jona Gokce, Ozgun Krammer, Christine Scheiermann, Patrick Tsilimparis, Nikolaos Sachs, Nadja Kempf, Wolfgang E. Maegdefessel, Lars Otabil, Michael K. Megens, Remco T. A. Ippel, Hans Koenen, Rory R. Luo, Junfu Engelmann, Bernd Mayo, Kevin H. Gawaz, Meinrad Kapurniotu, Aphrodite Weber, Christian von Hundelshausen, Philipp Bernhagen, Jürgen |
author_sort | Brandhofer, Markus |
collection | PubMed |
description | To fulfil its orchestration of immune cell trafficking, a network of chemokines and receptors developed that capitalizes on specificity, redundancy, and functional selectivity. The discovery of heteromeric interactions in the chemokine interactome has expanded the complexity within this network. Moreover, some inflammatory mediators, not structurally linked to classical chemokines, bind to chemokine receptors and behave as atypical chemokines (ACKs). We identified macrophage migration inhibitory factor (MIF) as an ACK that binds to chemokine receptors CXCR2 and CXCR4 to promote atherogenic leukocyte recruitment. Here, we hypothesized that chemokine–chemokine interactions extend to ACKs and that MIF forms heterocomplexes with classical chemokines. We tested this hypothesis by using an unbiased chemokine protein array. Platelet chemokine CXCL4L1 (but not its variant CXCL4 or the CXCR2/CXCR4 ligands CXCL8 or CXCL12) was identified as a candidate interactor. MIF/CXCL4L1 complexation was verified by co-immunoprecipitation, surface plasmon-resonance analysis, and microscale thermophoresis, also establishing high-affinity binding. We next determined whether heterocomplex formation modulates inflammatory/atherogenic activities of MIF. Complex formation was observed to inhibit MIF-elicited T-cell chemotaxis as assessed by transwell migration assay and in a 3D-matrix-based live cell-imaging set-up. Heterocomplexation also blocked MIF-triggered migration of microglia in cortical cultures in situ, as well as MIF-mediated monocyte adhesion on aortic endothelial cell monolayers under flow stress conditions. Of note, CXCL4L1 blocked binding of Alexa-MIF to a soluble surrogate of CXCR4 and co-incubation with CXCL4L1 attenuated MIF responses in HEK293-CXCR4 transfectants, indicating that complex formation interferes with MIF/CXCR4 pathways. Because MIF and CXCL4L1 are platelet-derived products, we finally tested their role in platelet activation. Multi-photon microscopy, FLIM-FRET, and proximity-ligation assay visualized heterocomplexes in platelet aggregates and in clinical human thrombus sections obtained from peripheral artery disease (PAD) in patients undergoing thrombectomy. Moreover, heterocomplexes inhibited MIF-stimulated thrombus formation under flow and skewed the lamellipodia phenotype of adhering platelets. Our study establishes a novel molecular interaction that adds to the complexity of the chemokine interactome and chemokine/receptor-network. MIF/CXCL4L1, or more generally, ACK/CXC-motif chemokine heterocomplexes may be target structures that can be exploited to modulate inflammation and thrombosis. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00018-022-04539-0. |
format | Online Article Text |
id | pubmed-9468113 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Springer International Publishing |
record_format | MEDLINE/PubMed |
spelling | pubmed-94681132022-09-14 Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation Brandhofer, Markus Hoffmann, Adrian Blanchet, Xavier Siminkovitch, Elena Rohlfing, Anne-Katrin El Bounkari, Omar Nestele, Jeremy A. Bild, Alexander Kontos, Christos Hille, Kathleen Rohde, Vanessa Fröhlich, Adrian Golemi, Jona Gokce, Ozgun Krammer, Christine Scheiermann, Patrick Tsilimparis, Nikolaos Sachs, Nadja Kempf, Wolfgang E. Maegdefessel, Lars Otabil, Michael K. Megens, Remco T. A. Ippel, Hans Koenen, Rory R. Luo, Junfu Engelmann, Bernd Mayo, Kevin H. Gawaz, Meinrad Kapurniotu, Aphrodite Weber, Christian von Hundelshausen, Philipp Bernhagen, Jürgen Cell Mol Life Sci Original Article To fulfil its orchestration of immune cell trafficking, a network of chemokines and receptors developed that capitalizes on specificity, redundancy, and functional selectivity. The discovery of heteromeric interactions in the chemokine interactome has expanded the complexity within this network. Moreover, some inflammatory mediators, not structurally linked to classical chemokines, bind to chemokine receptors and behave as atypical chemokines (ACKs). We identified macrophage migration inhibitory factor (MIF) as an ACK that binds to chemokine receptors CXCR2 and CXCR4 to promote atherogenic leukocyte recruitment. Here, we hypothesized that chemokine–chemokine interactions extend to ACKs and that MIF forms heterocomplexes with classical chemokines. We tested this hypothesis by using an unbiased chemokine protein array. Platelet chemokine CXCL4L1 (but not its variant CXCL4 or the CXCR2/CXCR4 ligands CXCL8 or CXCL12) was identified as a candidate interactor. MIF/CXCL4L1 complexation was verified by co-immunoprecipitation, surface plasmon-resonance analysis, and microscale thermophoresis, also establishing high-affinity binding. We next determined whether heterocomplex formation modulates inflammatory/atherogenic activities of MIF. Complex formation was observed to inhibit MIF-elicited T-cell chemotaxis as assessed by transwell migration assay and in a 3D-matrix-based live cell-imaging set-up. Heterocomplexation also blocked MIF-triggered migration of microglia in cortical cultures in situ, as well as MIF-mediated monocyte adhesion on aortic endothelial cell monolayers under flow stress conditions. Of note, CXCL4L1 blocked binding of Alexa-MIF to a soluble surrogate of CXCR4 and co-incubation with CXCL4L1 attenuated MIF responses in HEK293-CXCR4 transfectants, indicating that complex formation interferes with MIF/CXCR4 pathways. Because MIF and CXCL4L1 are platelet-derived products, we finally tested their role in platelet activation. Multi-photon microscopy, FLIM-FRET, and proximity-ligation assay visualized heterocomplexes in platelet aggregates and in clinical human thrombus sections obtained from peripheral artery disease (PAD) in patients undergoing thrombectomy. Moreover, heterocomplexes inhibited MIF-stimulated thrombus formation under flow and skewed the lamellipodia phenotype of adhering platelets. Our study establishes a novel molecular interaction that adds to the complexity of the chemokine interactome and chemokine/receptor-network. MIF/CXCL4L1, or more generally, ACK/CXC-motif chemokine heterocomplexes may be target structures that can be exploited to modulate inflammation and thrombosis. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00018-022-04539-0. Springer International Publishing 2022-09-12 2022 /pmc/articles/PMC9468113/ /pubmed/36094626 http://dx.doi.org/10.1007/s00018-022-04539-0 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Original Article Brandhofer, Markus Hoffmann, Adrian Blanchet, Xavier Siminkovitch, Elena Rohlfing, Anne-Katrin El Bounkari, Omar Nestele, Jeremy A. Bild, Alexander Kontos, Christos Hille, Kathleen Rohde, Vanessa Fröhlich, Adrian Golemi, Jona Gokce, Ozgun Krammer, Christine Scheiermann, Patrick Tsilimparis, Nikolaos Sachs, Nadja Kempf, Wolfgang E. Maegdefessel, Lars Otabil, Michael K. Megens, Remco T. A. Ippel, Hans Koenen, Rory R. Luo, Junfu Engelmann, Bernd Mayo, Kevin H. Gawaz, Meinrad Kapurniotu, Aphrodite Weber, Christian von Hundelshausen, Philipp Bernhagen, Jürgen Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title | Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title_full | Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title_fullStr | Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title_full_unstemmed | Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title_short | Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation |
title_sort | heterocomplexes between the atypical chemokine mif and the cxc-motif chemokine cxcl4l1 regulate inflammation and thrombus formation |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9468113/ https://www.ncbi.nlm.nih.gov/pubmed/36094626 http://dx.doi.org/10.1007/s00018-022-04539-0 |
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