Insights into the molecular basis and mechanism of heme‐triggered TLR4 signalling: The role of heme‐binding motifs in TLR4 and MD2

Author:

Hopp Marie‐T.12ORCID,Holze Janine3,Lauber Felicitas3,Holtkamp Laura3,Rathod Dhruv C.1,Miteva Maria A.45,Prestes Elisa B.6,Geyer Matthias7,Manoury Bénédicte8,Merle Nicolas S.91011,Roumenina Lubka T.91011,Bozza Marcelo T.6,Weindl Günther3,Imhof Diana1ORCID

Affiliation:

1. Pharmaceutical Biochemistry and Bioanalytics Pharmaceutical Institute, University of Bonn Bonn Germany

2. Department of Chemistry Institute of Integrated Natural Sciences, University of Koblenz Koblenz Germany

3. Pharmacology and Toxicology Pharmaceutical Institute, University of Bonn Bonn Germany

4. CNRS UMR 8038 CiTCoM, Université de Paris, Faculté de Pharmacie de Paris Paris France

5. INSERM U 1268 Medicinal Chemistry and Translational Research Paris France

6. Laboratório de Inflamação e Imunidade, Departamento de Imunologia Universidade Federal do Rio de Janeiro Rio de Janeiro Brazil

7. Institute of Structural Biology, University of Bonn Bonn Germany

8. Institut Necker Enfants Malades, INSERM U1151‐CNRS UMR8253, Université Paris Cité, Faculté de médecine Necker Paris France

9. Centre de Recherche des Cordeliers, UMR_S 1138, INSERM Paris France

10. Centre de Recherche des Cordeliers, Sorbonne Universités Paris France

11. Centre de Recherche des Cordeliers, Université Paris Descartes Paris France

Abstract

AbstractHaemolytic disorders, such as sickle cell disease, are accompanied by the release of high amounts of labile heme into the intravascular compartment resulting in the induction of proinflammatory and prothrombotic complications in affected patients. In addition to the relevance of heme‐regulated proteins from the complement and blood coagulation systems, activation of the TLR4 signalling pathway by heme was ascribed a crucial role in the progression of these pathological processes. Heme binding to the TLR4‐MD2 complex has been proposed recently, however, essential mechanistic information of the processes at the molecular level, such as heme‐binding kinetics, the heme‐binding capacity and the respective heme‐binding sites (HBMs) is still missing. We report the interaction of TLR4, MD2 and the TLR4‐MD2 complex with heme and the consequences thereof by employing biochemical, spectroscopic, bioinformatic and physiologically relevant approaches. Heme binding occurs transiently through interaction with up to four HBMs in TLR4, two HBMs in MD2 and at least four HBMs in their complex. Functional studies highlight that mutations of individual HBMs in TLR4 preserve full receptor activation by heme, suggesting that heme interacts with TLR4 through different binding sites independently of MD2. Furthermore, we confirm and extend the major role of TLR4 for heme‐mediated cytokine responses in human immune cells.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Immunology,Immunology and Allergy

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