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Enhanced prostacyclin formation and Wnt signaling in sclerostin deficient osteocytes and bone.


ABSTRACT: We show that prostacyclin production is increased in bone and osteocytes from sclerostin (Sost) knockout mice which have greatly increased bone mass. The addition of prostacyclin or a prostacyclin analog to bone forming osteoblasts enhances differentiation and matrix mineralization of osteoblasts. The increase in prostacyclin synthesis is linked to increases in ?-catenin concentrations and activity as shown by enhanced binding of lymphoid enhancer factor, Lef1, to promoter elements within the prostacyclin synthase promoter. Blockade of Wnt signaling reduces prostacyclin production in osteocytes. Increased prostacyclin production by osteocytes from sclerostin deficient mice could potentially contribute to the increased bone formation seen in this condition.

SUBMITTER: Ryan ZC 

PROVIDER: S-EPMC4052706 | biostudies-literature | 2014 May

REPOSITORIES: biostudies-literature

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Enhanced prostacyclin formation and Wnt signaling in sclerostin deficient osteocytes and bone.

Ryan Zachary C ZC   Craig Theodore A TA   Salisbury Jeffrey L JL   Carpio Lomeli R LR   McGee-Lawrence Meghan M   Westendorf Jennifer J JJ   Kumar Rajiv R  

Biochemical and biophysical research communications 20140426 1


We show that prostacyclin production is increased in bone and osteocytes from sclerostin (Sost) knockout mice which have greatly increased bone mass. The addition of prostacyclin or a prostacyclin analog to bone forming osteoblasts enhances differentiation and matrix mineralization of osteoblasts. The increase in prostacyclin synthesis is linked to increases in β-catenin concentrations and activity as shown by enhanced binding of lymphoid enhancer factor, Lef1, to promoter elements within the pr  ...[more]

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