peer reviewedThe adenosine diphosphate (ADP) receptor P2RY12 (purinergic receptor P2Y, G protein coupled, 12) plays a critical role in platelet aggregation, and P2RY12 inhibitors are used clinically to prevent cardiac and cerebral thrombotic events. Extracellular ADP has also been shown to increase osteoclast (OC) activity, but the role of P2RY12 in OC biology is unknown. Here, we examined the role of mouse P2RY12 in OC function. Mice lacking P2ry12 had decreased OC activity and were partially protected from age-associated bone loss. P2ry12-/- OCs exhibited intact differentiation markers, but diminished resorptive function. Extracellular ADP enhanced OC adhesion and resorptive activity of WT, but not P2ry12-/-, OCs. In platelets, ADP stimul...
Bone cells constitutively release ATP into the extracellular environment where it acts locally via P...
ATP release and subsequent activation of purinergic receptors has been suggested to be one of the ke...
The sympathetic nervous system is known to regulate osteoclast development. However, the involvement...
Osteoporosis is a condition of excessive and uncoupled bone turnover, in which osteoclastic resorpti...
Osteoporosis is a condition of excessive and uncoupled bone turnover, in which osteoclastic resorpti...
Extracellular nucleotides act as local intercellular messengers. In response to various stimuli, nuc...
Accumulating evidence indicates that extracellular nucleotides, signaling through purinergic recepto...
Accumulating evidence indicates that extracellular nucleotides, signaling through purinergic recepto...
Purinergic signaling mediates many cellular processes, including embryonic development and regulatio...
Accumulating evidence indicates that extracellular nucleotides, signaling through P2 receptors, play...
Purinergic signaling mediates many cellular processes, including embryonic development and regulatio...
ATP release and subsequent activation of purinergic receptors has been suggested to be one of the ke...
P2Y receptors, including eight subtypes, are G protein-coupled receptors that can be activated by ex...
Bone cells constitutively release ATP into the extracellular environment where it acts locally via P...
Accumulating evidence indicates that extracellular nucleotides, signaling through P2 receptors, play...
Bone cells constitutively release ATP into the extracellular environment where it acts locally via P...
ATP release and subsequent activation of purinergic receptors has been suggested to be one of the ke...
The sympathetic nervous system is known to regulate osteoclast development. However, the involvement...
Osteoporosis is a condition of excessive and uncoupled bone turnover, in which osteoclastic resorpti...
Osteoporosis is a condition of excessive and uncoupled bone turnover, in which osteoclastic resorpti...
Extracellular nucleotides act as local intercellular messengers. In response to various stimuli, nuc...
Accumulating evidence indicates that extracellular nucleotides, signaling through purinergic recepto...
Accumulating evidence indicates that extracellular nucleotides, signaling through purinergic recepto...
Purinergic signaling mediates many cellular processes, including embryonic development and regulatio...
Accumulating evidence indicates that extracellular nucleotides, signaling through P2 receptors, play...
Purinergic signaling mediates many cellular processes, including embryonic development and regulatio...
ATP release and subsequent activation of purinergic receptors has been suggested to be one of the ke...
P2Y receptors, including eight subtypes, are G protein-coupled receptors that can be activated by ex...
Bone cells constitutively release ATP into the extracellular environment where it acts locally via P...
Accumulating evidence indicates that extracellular nucleotides, signaling through P2 receptors, play...
Bone cells constitutively release ATP into the extracellular environment where it acts locally via P...
ATP release and subsequent activation of purinergic receptors has been suggested to be one of the ke...
The sympathetic nervous system is known to regulate osteoclast development. However, the involvement...