Chitinases and chitinase-like proteins are an evolutionary conserved group of proteins. In the absence of chitin synthesis in mammals, the conserved presence of chitinases suggests their roles in physiology and immunity, but experimental evidence to prove these roles is scarce. Chitotriosidase (chit1) is one of the two true chitinases present in mammals and the most prevalent chitinase in humans. In this study, we investigated the regulation and the role of chit1 in a mouse model of lung infection. We show that chitinase activity in bronchoalveolar lavage fluid is significantly reduced during lung infection. This reduced activity is inversely correlated with the number of neutrophils. Further, instilling neutrophil lysates in lungs decreased chitinase activity. We observed degradation of chit1 by neutrophil proteases. In a mouse model, chit1 deficiency provided a significant advantage to the host during lung infection by limiting bacterial dissemination. This phenotype was independent of inflammatory changes in chit1 mice as they exerted a similar inflammatory response. The decreased dissemination resulted in improved survival in chit1 mice infected with in the presence or absence of antibiotic therapy. The beneficial effects of chit1 deficiency were associated with altered Akt activation in the lungs. Chit1 mice induced a more robust Akt activation postinfection. The role of the Akt pathway in lung infection was confirmed by using an Akt inhibitor, which impaired health and survival. These data suggest a detrimental role of chit1 in lung infections.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6291403PMC
http://dx.doi.org/10.4049/jimmunol.1701782DOI Listing

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