Stretch regulates alveologenesis and homeostasis via mesenchymal Gαq/11-mediated TGFβ2 activation

Author:

Goodwin Amanda T.123ORCID,John Alison E.4ORCID,Joseph Chitra123ORCID,Habgood Anthony123,Tatler Amanda L.123ORCID,Susztak Katalin5ORCID,Palmer Matthew6,Offermanns Stefan7ORCID,Henderson Neil C.89ORCID,Jenkins R. Gisli4

Affiliation:

1. Centre for Respiratory Research, Translational Medical Sciences, School of Medicine, University of Nottingham, Nottingham, NG7 2RD 1 , UK

2. Respiratory Medicine, Nottingham NIHR Biomedical Research Centre 2 , Nottingham, NG7 2RD , UK

3. Respiratory Medicine, Biodiscovery Institute, University Park, University of Nottingham 3 , Nottingham, NG7 2RD , UK

4. Margaret Turner Warwick Centre for Fibrosing Lung Disease, National Heart and Lung Institute, Imperial College London, London, SW3 6LY 4 , UK

5. University of Pennsylvania Perelman School of Medicine 5 Department of Medicine, Division of Nephrology , , Philadelphia, PA 19104 , USA

6. University of Pennsylvania Perelman School of Medicine 6 Department of Pathology, Division of Nephrology , , Philadelphia, PA 19104-4238 , USA

7. Department of Pharmacology, Max Planck Institute for Heart and Lung Research 7 , 61231 Bad Nauheim , Germany

8. Centre for Inflammation Research, University of Edinburgh 8 , EH16 4TJ, UK

9. Institute of Genetics and Molecular Medicine, University of Edinburgh 9 MRC Human Genetics Unit , , Edinburgh , EH4 2XU, UK

Abstract

ABSTRACT Alveolar development and repair require tight spatiotemporal regulation of numerous signalling pathways that are influenced by chemical and mechanical stimuli. Mesenchymal cells play key roles in numerous developmental processes. Transforming growth factor-β (TGFβ) is essential for alveologenesis and lung repair, and the G protein α subunits Gαq and Gα11 (Gαq/11) transmit mechanical and chemical signals to activate TGFβ in epithelial cells. To understand the role of mesenchymal Gαq/11 in lung development, we generated constitutive (Pdgfrb-Cre+/−;Gnaqfl/fl;Gna11−/−) and inducible (Pdgfrb-Cre/ERT2+/−;Gnaqfl/fl;Gna11−/−) mesenchymal Gαq/11 deleted mice. Mice with constitutive Gαq/11 gene deletion exhibited abnormal alveolar development, with suppressed myofibroblast differentiation, altered mesenchymal cell synthetic function, and reduced lung TGFβ2 deposition, as well as kidney abnormalities. Tamoxifen-induced mesenchymal Gαq/11 gene deletion in adult mice resulted in emphysema associated with reduced TGFβ2 and elastin deposition. Cyclical mechanical stretch-induced TGFβ activation required Gαq/11 signalling and serine protease activity, but was independent of integrins, suggesting an isoform-specific role for TGFβ2 in this model. These data highlight a previously undescribed mechanism of cyclical stretch-induced Gαq/11-dependent TGFβ2 signalling in mesenchymal cells, which is imperative for normal alveologenesis and maintenance of lung homeostasis.

Funder

Medical Research Council

National Institute for Health Research

Medical Research Foundation

Wellcome Trust

University of Nottingham

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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