STAT3–BDNF–TrkB signalling promotes alveolar epithelial regeneration after lung injury

被引:0
作者
Andrew J. Paris
Katharina E. Hayer
Joseph H. Oved
Daphne C. Avgousti
Sushila A. Toulmin
Jarod A. Zepp
William J. Zacharias
Jeremy B. Katzen
Maria C. Basil
Madison M. Kremp
April R. Slamowitz
Sowmya Jayachandran
Aravind Sivakumar
Ning Dai
Ping Wang
David B. Frank
Laurence C. Eisenlohr
Edward Cantu
Michael F. Beers
Matthew D. Weitzman
Edward E. Morrisey
G. Scott Worthen
机构
[1] University of Pennsylvania,Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, Perelman School of Medicine
[2] Children’s Hospital of Philadelphia,Department of Biomedical and Health Informatics
[3] University of Pennsylvania,Division of Hematology, Department of Pediatrics, Perelman School of Medicine
[4] Fred Hutchinson Cancer Research Center,Division of Human Biology
[5] University of Pennsylvania,Department of Pathology and Laboratory Medicine, Perelman School of Medicine
[6] University of Pennsylvania,Penn
[7] University of Cincinnati College of Medicine,CHOP Lung Biology Institute, Perelman School of Medicine
[8] Children’s National,Division of Pulmonary Biology, Perinatal Institute, Department of Pediatrics
[9] University of Pennsylvania,Department of Pediatrics
[10] University of Pennsylvania,Division of Cardiology, Department of Pediatrics, Perelman School of Medicine
[11] Children’s Hospital of Philadelphia,Division of Neonatology, Department of Pediatrics, Perelman School of Medicine
[12] University of Pennsylvania,Division of Protective Immunity, Department of Pathology and Laboratory Medicine
[13] University of Pennsylvania,Division of Cardiovascular Surgery, Department of Surgery, Perelman School of Medicine
[14] Perelman School of Medicine,Penn Cardiovascular Institute, Perelman School of Medicine
[15] University of Pennsylvania,Penn Institute for Regenerative Medicine
来源
Nature Cell Biology | 2020年 / 22卷
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摘要
Alveolar epithelial regeneration is essential for recovery from devastating lung diseases. This process occurs when type II alveolar pneumocytes (AT2 cells) proliferate and transdifferentiate into type I alveolar pneumocytes (AT1 cells). We used genome-wide analysis of chromatin accessibility and gene expression following acute lung injury to elucidate repair mechanisms. AT2 chromatin accessibility changed substantially following injury to reveal STAT3 binding motifs adjacent to genes that regulate essential regenerative pathways. Single-cell transcriptome analysis identified brain-derived neurotrophic factor (Bdnf) as a STAT3 target gene with newly accessible chromatin in a unique population of regenerating AT2 cells. Furthermore, the BDNF receptor tropomyosin receptor kinase B (TrkB) was enriched on mesenchymal alveolar niche cells (MANCs). Loss or blockade of AT2-specific Stat3, Bdnf or mesenchyme-specific TrkB compromised repair and reduced Fgf7 expression by niche cells. A TrkB agonist improved outcomes in vivo following lung injury. These data highlight the biological and therapeutic importance of the STAT3–BDNF–TrkB axis in orchestrating alveolar epithelial regeneration.
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页码:1197 / 1210
页数:13
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