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Publication : Wnt-Lrp5 signaling regulates fatty acid metabolism in the osteoblast.

First Author  Frey JL Year  2015
Journal  Mol Cell Biol Volume  35
Issue  11 Pages  1979-91
PubMed ID  25802278 Mgi Jnum  J:224403
Mgi Id  MGI:5662170 Doi  10.1128/MCB.01343-14
Citation  Frey JL, et al. (2015) Wnt-Lrp5 signaling regulates fatty acid metabolism in the osteoblast. Mol Cell Biol 35(11):1979-91
abstractText  The Wnt coreceptors Lrp5 and Lrp6 are essential for normal postnatal bone accrual and osteoblast function. In this study, we identify a previously unrecognized skeletal function unique to Lrp5 that enables osteoblasts to oxidize fatty acids. Mice lacking the Lrp5 coreceptor specifically in osteoblasts and osteocytes exhibit the expected reductions in postnatal bone mass but also exhibit an increase in body fat with corresponding reductions in energy expenditure. Conversely, mice expressing a high bone mass mutant Lrp5 allele are leaner with reduced plasma triglyceride and free fatty acid levels. In this context, Wnt-initiated signals downstream of Lrp5, but not the closely related Lrp6 coreceptor, regulate the activation of beta-catenin and thereby induce the expression of key enzymes required for fatty acid beta-oxidation. These results suggest that Wnt-Lrp5 signaling regulates basic cellular activities beyond those associated with fate specification and differentiation in bone and that the skeleton influences global energy homeostasis via mechanisms independent of osteocalcin and glucose metabolism.
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