Alveolar macrophage metabolic programming via a C-type lectin receptor protects against lipo-toxicity and cell death

Author:

Scur Michal,Mahmoud Ahmad BakurORCID,Dey Sayanti,Abdalbarri Farah,Stylianides Iona,Medina-Luna Daniel,Gamage Gayani S.,Woblistin Aaron,Wilson Alexa N. M.ORCID,Zein Haggag S.,Stueck AshleyORCID,Wight Andrew,Aguilar Oscar A.,Di Cara Francesca,Parsons Brendon D.,Rahim Mir Munir A.,Carlyle James R.,Makrigiannis Andrew P.ORCID

Abstract

AbstractAlveolar macrophages (AM) hold lung homeostasis intact. In addition to the defense against inhaled pathogens and deleterious inflammation, AM also maintain pulmonary surfactant homeostasis, a vital lung function that prevents pulmonary alveolar proteinosis. Signals transmitted between AM and pneumocytes of the pulmonary niche coordinate these specialized functions. However, the mechanisms that guide the metabolic homeostasis of AM remain largely elusive. We show that the NK cell-associated receptor, NKR-P1B, is expressed by AM and is essential for metabolic programming.Nkrp1b−/−mice are vulnerable to pneumococcal infection due to an age-dependent collapse in the number of AM and the formation of lipid-laden AM. The AM ofNkrp1b−/−mice show increased uptake but defective metabolism of surfactant lipids. We identify a physical relay between AM and alveolar type-II pneumocytes that is dependent on pneumocyte Clr-g expression. These findings implicate the NKR-P1B:Clr-g signaling axis in AM-pneumocyte communication as being important for maintaining metabolism in AM.

Funder

Beatrice Hunter Cancer Research Institute

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Gouvernement du Canada | Canadian Institutes of Health Research

Publisher

Springer Science and Business Media LLC

Subject

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

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