WNT/RYK signaling functions as an antiinflammatory modulator in the lung mesenchyme

Author:

Kim Hyun-Taek12345,Panza Paolo123ORCID,Kikhi Khrievono6ORCID,Nakamichi Yuko7ORCID,Atzberger Ann6,Guenther Stefan28,Ruppert Clemens39ORCID,Guenther Andreas239,Stainier Didier Y. R.123ORCID

Affiliation:

1. Department of Developmental Genetics, Max Planck Institute for Heart and Lung Research, 61231 Bad Nauheim, Germany

2. Cardiopulmonary Institute, Max Planck Institute for Heart and Lung Research, 61231 Bad Nauheim, Germany

3. Member of the German Center for Lung Research, Partner Site Universities of Giessen and Marburg Lung Center, 35392 Giessen, Germany

4. Soonchunhyang Institute of Medi-Bio Science, Soonchunhyang University, 31151 Cheonan-si, Republic of Korea

5. Department of Integrated Biomedical Science, Soonchunhyang University, 31151 Cheonan-si, Republic of Korea

6. Flow Cytometry Facility, Max Planck Institute for Heart and Lung Research, 61231 Bad Nauheim, Germany

7. Institute for Oral Science, Matsumoto Dental University, 399-0781 Shiojiri, Japan

8. Bioinformatics and Deep Sequencing Platform, Max Planck Institute for Heart and Lung Research, 61231 Bad Nauheim, Germany

9. DZL (Deutsches Zentrum für Lungenforschung) Biobanking Platform, Universities of Giessen and Marburg Lung Center, 35392 Giessen, Germany

Abstract

A number of inflammatory lung diseases, including chronic obstructive pulmonary disease, idiopathic pulmonary fibrosis, and pneumonia, are modulated by WNT/β-catenin signaling. However, the underlying molecular mechanisms remain unclear. Here, starting with a forward genetic screen in mouse, we identify the WNT coreceptor Related to receptor tyrosine kinase (RYK) acting in mesenchymal tissues as a cell survival and antiinflammatory modulator.Rykmutant mice exhibit lung hypoplasia and inflammation as well as alveolar simplification due to defective secondary septation, and deletion ofRykspecifically in mesenchymal cells also leads to these phenotypes. By analyzing the transcriptome of wild-type and mutant lungs, we observed the up-regulation of proapoptotic and inflammatory genes whose expression can be repressed by WNT/RYK signaling in vitro. Moreover, mesenchymalRykdeletion at postnatal and adult stages can also lead to lung inflammation, thus indicating a continued role for WNT/RYK signaling in homeostasis. Our results indicate that RYK signaling through β-catenin and Nuclear Factor kappa B (NF-κB) is part of a safeguard mechanism against mesenchymal cell death, excessive inflammatory cytokine production, and inflammatory cell recruitment and accumulation. Notably, RYK expression is down-regulated in the stromal cells of pneumonitis patient lungs. Altogether, our data reveal that RYK signaling plays critical roles as an antiinflammatory modulator during lung development and homeostasis and provide an animal model to further investigate the etiology of, and therapeutic approaches to, inflammatory lung diseases.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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