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Bone marrow adipogenic lineage precursors promote osteoclastogenesis in bone remodeling and pathologic bone loss

Authors :
Hyunsoo Kim
Wei Yu
Yulong Wei
X. Sherry Liu
Shuying Yang
Yongwon Choi
Lutian Yao
Nathaniel A. Dyment
Ziqing Li
Xi Jiang
Wei Tong
Leilei Zhong
Tao Gui
Nicholas Holdreith
Jaimo Ahn
Ling Qin
Source :
J Clin Invest
Publication Year :
2021
Publisher :
American Society for Clinical Investigation, 2021.

Abstract

Bone is maintained by coupled activities of bone-forming osteoblasts/osteocytes and bone-resorbing osteoclasts. Alterations in this relationship can lead to pathologic bone loss such as osteoporosis. It is well known that osteogenic cells support osteoclastogenesis via production of RANKL. Interestingly, our recently identified bone marrow mesenchymal cell population-marrow adipogenic lineage precursors (MALPs) that form a multidimensional cell network in bone-was computationally demonstrated to be the most interactive with monocyte-macrophage lineage cells through high and specific expression of several osteoclast regulatory factors, including RANKL. Using an adipocyte-specific Adipoq-Cre to label MALPs, we demonstrated that mice with RANKL deficiency in MALPs have a drastic increase in trabecular bone mass in long bones and vertebrae starting from 1 month of age, while their cortical bone appears normal. This phenotype was accompanied by diminished osteoclast number and attenuated bone formation at the trabecular bone surface. Reduced RANKL signaling in calvarial MALPs abolished osteolytic lesions after LPS injections. Furthermore, in ovariectomized mice, elevated bone resorption was partially attenuated by RANKL deficiency in MALPs. In summary, our studies identified MALPs as a critical player in controlling bone remodeling during normal bone metabolism and pathological bone loss in a RANKL-dependent fashion.

Details

Language :
English
Database :
OpenAIRE
Journal :
J Clin Invest
Accession number :
edsair.doi.dedup.....dc8e8eaef8ab6e3af3627883de70ea24