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Insights into pulmonary phosphate homeostasis and osteoclastogenesis emerge from the study of pulmonary alveolar microlithiasis

Authors :
Yasuaki Uehara
Yusuke Tanaka
Shuyang Zhao
Nikolaos M. Nikolaidis
Lori B. Pitstick
Huixing Wu
Jane J. Yu
Erik Zhang
Yoshihiro Hasegawa
John G. Noel
Jason C. Gardner
Elizabeth J. Kopras
Wendy D. Haffey
Kenneth D. Greis
Jinbang Guo
Jason C. Woods
Kathryn A. Wikenheiser-Brokamp
Jennifer E. Kyle
Charles Ansong
Steven L. Teitelbaum
Yoshikazu Inoue
Göksel Altinişik
Yan Xu
Francis X. McCormack
Source :
Nature Communications. 14
Publication Year :
2023
Publisher :
Springer Science and Business Media LLC, 2023.

Abstract

Pulmonary alveolar microlithiasis is an autosomal recessive lung disease caused by a deficiency in the pulmonary epithelial Npt2b sodium-phosphate co-transporter that results in accumulation of phosphate and formation of hydroxyapatite microliths in the alveolar space. The single cell transcriptomic analysis of a pulmonary alveolar microlithiasis lung explant showing a robust osteoclast gene signature in alveolar monocytes and the finding that calcium phosphate microliths contain a rich protein and lipid matrix that includes bone resorbing osteoclast enzymes and other proteins suggested a role for osteoclast-like cells in the host response to microliths. While investigating the mechanisms of microlith clearance, we found that Npt2b modulates pulmonary phosphate homeostasis through effects on alternative phosphate transporter activity and alveolar osteoprotegerin, and that microliths induce osteoclast formation and activation in a receptor activator of nuclear factor-κB ligand and dietary phosphate dependent manner. This work reveals that Npt2b and pulmonary osteoclast-like cells play key roles in pulmonary homeostasis and suggest potential new therapeutic targets for the treatment of lung disease.

Details

ISSN :
20411723
Volume :
14
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....3e210bac8de7797a5baf044fbb17d3f9