Lung extracellular matrix modulates KRT5<sup>+</sup> basal cell activity in pulmonary fibrosis.

Hewitt, Richard J; Puttur, Franz; Gaboriau, David C A; Fercoq, Frédéric; Fresquet, Maryline; Traves, William J; Yates, Laura L; Walker, Simone A et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

Aberrant expansion of KRT5<sup>+</sup> basal cells in the distal lung accompanies progressive alveolar epithelial cell loss and tissue remodelling during fibrogenesis in idiopathic pulmonary fibrosis (IPF). The mechanisms determining activity of KRT5<sup>+</sup> cells in IPF have not been delineated. Here, we reveal a potential mechanism by which KRT5<sup>+</sup> cells migrate within the fibrotic lung, navigating regional differences in collagen topography. In vitro, KRT5<sup>+</sup> cell migratory characteristics and expression of remodelling genes are modulated by extracellular matrix (ECM) composition and organisation. Mass spectrometry- based proteomics revealed compositional differences in ECM components secreted by primary human lung fibroblasts (HLF) from IPF patients compared to controls. Over-expression of ECM glycoprotein, Secreted Protein Acidic and Cysteine Rich (SPARC) in the IPF HLF matrix restricts KRT5<sup>+</sup> cell migration in vitro. Together, our findings demonstrate how changes to the ECM in IPF directly influence KRT5<sup>+</sup> cell behaviour and function contributing to remodelling events in the fibrotic niche.

Medical subject headings