Bosutinib prevents vascular leakage by reducing focal adhesion turnover and reinforcing junctional integrity

Author:

Botros Liza12ORCID,Pronk Manon C. A.2,Juschten Jenny3,Liddle John4,Morsing Sofia K. S. H.5,van Buul Jaap D.5,Bates Robert H.4,Tuinman Pieter R.3,van Bezu Jan S. M.2,Huveneers Stephan6,Bogaard Harm Jan1,van Hinsbergh Victor W. M.2,Hordijk Peter L.2,Aman Jurjan1

Affiliation:

1. Amsterdam UMC, Vrije Universiteit Amsterdam, Department of Pulmonology, Amsterdam Cardiovascular Sciences, 1081 BT Amsterdam, The Netherlands

2. Amsterdam UMC, Vrije Universiteit Amsterdam, Department of Physiology, Amsterdam Cardiovascular Sciences, 1081 BT Amsterdam The Netherlands

3. Amsterdam UMC, University of Amsterdam Department of Intensive Care, 1105 AZ Amsterdam The Netherlands

4. GlaxoSmithKline, Stevenage, UK

5. Molecular Cell Biology Lab at Dept. Molecular Cellular Haemostasis, Sanquin Research and Landsteiner Laboratory, Amsterdam, the Netherlands

6. Amsterdam UMC, University of Amsterdam, Department of Medical Biochemistry, Amsterdam Cardiovascular Sciences, 1105 AZ Amsterdam, The Netherlands

Abstract

Aims: Endothelial barrier dysfunction leads to edema and vascular leak, carrying high morbidity and mortality. Previously, Abl kinase inhibition was shown to protect against vascular leak. Using the distinct inhibitory profiles of clinically available Abl kinase inhibitors, we aimed to provide a mechanistic basis for novel treatment strategies against vascular leakage syndromes. Methods & Results: Bosutinib most potently protected against inflammation-induced endothelial barrier disruption. In vivo, bosutinib prevented LPS-induced alveolar protein extravasation in an acute lung injury mice model. Mechanistically, Mitogen-activated Protein 4 Kinase 4 (MAP4K4) was identified as important novel mediator of endothelial permeability, which signals via ezrin, radixin and moesin proteins to increase turnover of integrin-based focal adhesions. The combined inhibition of MAP4K4 and Arg by bosutinib preserved adherens junction integrity and reduced turnover of focal adhesions, which synergistically act to stabilize the endothelial barrier during inflammation. Conclusion: MAP4K4 was identified as important regulator of endothelial barrier integrity, increasing focal adhesion turnover and disruption of cell-cell junctions during inflammation. Inhibiting both Arg and MAP4K4, the clinically available drug bosutinib may form a viable strategy against vascular leakage syndromes.

Funder

Hartstichting

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Publisher

The Company of Biologists

Subject

Cell Biology

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