Upregulation of Robo4 expression by SMAD signaling suppresses vascular permeability and mortality in endotoxemia and COVID-19 models

Author:

Morita Maaya1,Yoneda Aki1,Tokunoh Nagisa23,Masaki Tatsumi1,Shirakura Keisuke1ORCID,Kinoshita Mayumi1,Hashimoto Rina4ORCID,Shigesada Naoya1,Takahashi Junya1,Tachibana Masashi1ORCID,Tanaka Shota1,Obana Masanori15,Hino Nobumasa1,Ikawa Masahito125ORCID,Tsujikawa Kazutake1,Ono Chikako25,Matsuura Yoshiharu25,Kidoya Hiroyasu6,Takakura Nobuyuki25,Kubota Yoshiaki7ORCID,Doi Takefumi1,Takayama Kazuo4ORCID,Yoshioka Yasuo1235,Fujio Yasushi15,Okada Yoshiaki15ORCID

Affiliation:

1. Graduate School of Pharmaceutical Sciences, Osaka University, Osaka 565-0871, Japan

2. Research Institute for Microbial Diseases, Osaka University, Osaka 565-0871, Japan

3. BIKEN Center for Innovative Vaccine Research and Development, The Research Foundation for Microbial Diseases of Osaka University, Osaka 565-0871, Japan

4. Center for iPS Cell Research and Application, Kyoto University, Kyoto 606-8507, Japan

5. Center for Infectious Disease Education and Research, Osaka University, Osaka 565-0871, Japan

6. Department of Integrative Vascular Biology, Faculty of Medical Sciences, University of Fukui, Fukui 910-1193, Japan

7. Department of Anatomy, Keio University School of Medicine, Tokyo 160-8582, Japan

Abstract

There is an urgent need to develop novel drugs to reduce the mortality from severe infectious diseases with the emergence of new pathogens, including Coronavirus disease 2019 (COVID-19). Although current drugs effectively suppress the proliferation of pathogens, immune cell activation, and inflammatory cytokine functions, they cannot completely reduce mortality from severe infections and sepsis. In this study, we focused on the endothelial cell-specific protein, Roundabout 4 (Robo4), which suppresses vascular permeability by stabilizing endothelial cells, and investigated whether enhanced Robo4 expression could be a novel therapeutic strategy against severe infectious diseases. Endothelial-specific overexpression of Robo4 suppresses vascular permeability and reduces mortality in lipopolysaccharide (LPS)-treated mice. Screening of small molecules that regulate Robo4 expression and subsequent analysis revealed that two competitive small mothers against decapentaplegic (SMAD) signaling pathways, activin receptor-like kinase 5 (ALK5)-SMAD2/3 and ALK1-SMAD1/5, positively and negatively regulate Robo4 expression, respectively. An ALK1 inhibitor was found to increase Robo4 expression in mouse lungs, suppress vascular permeability, prevent extravasation of melanoma cells, and decrease mortality in LPS-treated mice. The inhibitor suppressed severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)-induced endothelial barrier disruption and decreased mortality in mice infected with SARS-CoV-2. These results indicate that enhancing Robo4 expression is an efficient strategy to suppress vascular permeability and mortality in severe infectious diseases, including COVID-19, and that small molecules that upregulate Robo4 can be potential therapeutic agents against these diseases.

Funder

MEXT | Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Takeda Science Foundation

Japan Research Foundation for Clinical Pharmacology

Mochida Memorial Foundation for Medical and Pharmaceutical Research

Nippon Foundation-Osaka University Project for Infectious Disease Prevention

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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