Choline kinase β mutant mice exhibit reduced phosphocholine, elevated osteoclast activity, and low bone mass

胆碱激酶 β 突变小鼠表现出磷酸胆碱减少、破骨细胞活性升高和骨量低

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作者:Jasreen Kular, Jennifer C Tickner, Nathan J Pavlos, Helena M Viola, Tamara Abel, Bay Sie Lim, Xiaohong Yang, Honghui Chen, Robert Cook, Livia C Hool, Ming Hao Zheng, Jiake Xu

Abstract

The maintenance of bone homeostasis requires tight coupling between bone-forming osteoblasts and bone-resorbing osteoclasts. However, the precise molecular mechanism(s) underlying the differentiation and activities of these specialized cells are still largely unknown. Here, we identify choline kinase β (CHKB), a kinase involved in the biosynthesis of phosphatidylcholine, as a novel regulator of bone homeostasis. Choline kinase β mutant mice (flp/flp) exhibit a systemic low bone mass phenotype. Consistently, osteoclast numbers and activity are elevated in flp/flp mice. Interestingly, osteoclasts derived from flp/flp mice exhibit reduced sensitivity to excessive levels of extracellular calcium, which could account for the increased bone resorption. Conversely, supplementation of cytidine 5'-diphosphocholine in vivo and in vitro, a regimen that bypasses CHKB deficiency, restores osteoclast numbers to physiological levels. Finally, we demonstrate that, in addition to modulating osteoclast formation and function, loss of CHKB corresponds with a reduction in bone formation by osteoblasts. Taken together, these data posit CHKB as a new modulator of bone homeostasis.

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