An extracellular matrix fragment drives epithelial remodeling and airway hyperresponsiveness.

Patel, Dhiren F; Peiró, Teresa; Shoemark, Amelia; Akthar, Samia; Walker, Simone A; Grabiec, Aleksander M; Jackson, Patricia L; Hussell, Tracy et al. · Sci Transl Med · 2018

basic_science · Level V

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Abstract

It is anticipated that bioactive fragments of the extracellular matrix (matrikines) can influence the development and progression of chronic diseases. The enzyme leukotriene A<sub>4</sub> hydrolase (LTA<sub>4</sub>H) mediates opposing proinflammatory and anti-inflammatory activities, through the generation of leukotriene B<sub>4</sub> (LTB<sub>4</sub>) and degradation of proneutrophilic matrikine Pro-Gly-Pro (PGP), respectively. We show that abrogation of LTB<sub>4</sub> signaling ameliorated inflammation and airway hyperresponsiveness (AHR) in a murine asthma model, yet global loss of LTA<sub>4</sub>H exacerbated AHR, despite the absence of LTB<sub>4</sub> This exacerbated AHR was attributable to a neutrophil-independent capacity of PGP to promote pathological airway epithelial remodeling. Thus, we demonstrate a disconnect between airway inflammation and AHR and the ability of a matrikine to promote an epithelial remodeling phenotype that negatively affects lung function. Subsequently, we show that substantial quantities of PGP are detectable in the sputum of moderate-severe asthmatics in two distinct cohorts of patients. These studies have implications for our understanding of remodeling phenotypes in asthma and may rationalize the failure of LTA<sub>4</sub>H inhibitors in the clinic.

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