Distinct roles of KLF4 in mesenchymal cell subtypes during lung fibrogenesis

Author:

Chandran Rachana R.,Xie YiORCID,Gallardo-Vara EunateORCID,Adams Taylor,Garcia-Milian RolandoORCID,Kabir InamulORCID,Sheikh Abdul Q.,Kaminski NaftaliORCID,Martin Kathleen A.,Herzog Erica L.,Greif Daniel M.ORCID

Abstract

AbstractDuring lung fibrosis, the epithelium induces signaling to underlying mesenchyme to generate excess myofibroblasts and extracellular matrix; herein, we focus on signaling in the mesenchyme. Our studies indicate that platelet-derived growth factor receptor (PDGFR)-β+ cells are the predominant source of myofibroblasts and Kruppel-like factor (KLF) 4 is upregulated in PDGFR-β+ cells, inducing TGFβ pathway signaling and fibrosis. In fibrotic lung patches, KLF4 is down-regulated, suggesting KLF4 levels decrease as PDGFR-β+ cells transition into myofibroblasts. In contrast to PDGFR-β+ cells, KLF4 reduction in α-smooth muscle actin (SMA)+ cells non-cell autonomously exacerbates lung fibrosis by inducing macrophage accumulation and pro-fibrotic effects of PDGFR-β+ cells via a Forkhead box M1 to C-C chemokine ligand 2—receptor 2 pathway. Taken together, in the context of lung fibrosis, our results indicate that KLF4 plays opposing roles in PDGFR-β+ cells and SMA+ cells and highlight the importance of further studies of interactions between distinct mesenchymal cell types.

Funder

U.S. Department of Defense

U.S. Department of Health & Human Services | NIH | National Heart, Lung, and Blood Institute

American Heart Association

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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