PLoS ONE (Jan 2020)

A kinase inhibitor screen identifies signaling pathways regulating mucosal growth during otitis media.

  • Julia Noel,
  • Keigo Suzukawa,
  • Eduardo Chavez,
  • Kwang Pak,
  • Stephen I Wasserman,
  • Arwa Kurabi,
  • Allen F Ryan

DOI
https://doi.org/10.1371/journal.pone.0235634
Journal volume & issue
Vol. 15, no. 8
p. e0235634

Abstract

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Otitis media, the most common disease of childhood, is characterized by extensive changes in the morphology of the middle ear cavity. This includes hyperplasia of the mucosa that lines the tympanic cavity, from a simple monolayer of squamous epithelium into a greatly thickened, respiratory-type mucosa. The processes that control this response, which is critical to otitis media pathogenesis and recovery, are incompletely understood. Given the central role of protein phosphorylation in most intracellular processes, including cell proliferation and differentiation, we screened a library of kinase inhibitors targeting members of all the major families in the kinome for their ability to influence the growth of middle ear mucosal explants in vitro. Of the 160 inhibitors, 30 were found to inhibit mucosal growth, while two inhibitors enhanced tissue proliferation. The results suggest that the regulation of infection-mediated tissue growth in the ME mucosa involves multiple cellular processes that span the kinome. While some of the pathways and processes identified have been previously implicated in mucosa hyperplasia others are novel. The results were used to generate a global model of growth regulation by kinase pathways. The potential for therapeutic applications of the results are discussed.