P2X7 nucleotide receptors mediate blebbing in osteoblasts through a pathway involving lysophosphatidic acid
Nattapon Panupinthu1, Lin Zhao, Fred Possmayer
1Canadian Institutes of Health Research Group in Skeletal Development and Remodeling, Department of Physiology and Pharmacology, The University of Western Ontario, London, Canada.
Abstract:
Extracellular nucleotides, released in response to mechanical or inflammatory stimuli, signal through P2 receptors in many cell types, including osteoblasts. P2X7 receptors are ATP-gated cation channels that can induce formation of large membrane pores. Disruption of the gene encoding the P2X7 receptor leads to decreased periosteal bone formation and insensitivity of the skeleton to mechanical stimulation. Our purpose was to investigate signaling pathways coupled to P2X7 activation in osteoblasts. Live cell imaging showed that ATP or 2 ',3 '-O-(4-benzoylbenzoyl)-ATP (BzATP), but not UTP, UDP, or 2-methylthio-ADP, induced dynamic membrane blebbing in calvarial osteoblasts. Blebbing was observed in calvarial cells from wildtype but not P2X7 knock-out mice. P2X7 receptors coupled to activation of phospholipase D and A2, inhibition of which suppressed BzATP-induced blebbing. Activation of these phospholipases leads to production of lysophosphatidic acid (LPA). LPA caused dynamic blebbing in osteoblasts from both wild-type and P2X7 knock-out mice, similar to that induced by BzATP in wildtype cells. However, LPA-induced blebbing was more rapid in onset and was not affected by inhibition of phospholipase D or A2. Blockade or desensitization of LPA receptors suppressed blebbing in response to LPA and BzATP, without affecting P2X7-stimulated pore formation. Thus, LPA functions downstream of P2X7 receptors to induce membrane blebbing. Furthermore, inhibition of Rho-associated kinase abolished blebbing induced by both BzATP and LPA. In summary, we propose a novel signaling axis that links P2X7 receptors through phospholipases to production of LPA and activation of Rho-associated kinase. This pathway may contribute to P2X7-stimulated osteogenesis during skeletal development and mechanotransduction.
Insights
Extracellular nucleotides acting through P2X7 receptors trigger osteoblast membrane blebbing via lysophosphatidic acid (LPA) and Rho-associated kinase signaling, impacting bone formation and mechanotransduction.
Area of Science:
- Cell Biology
- Skeletal Biology
- Biochemistry
Background:
- Extracellular nucleotides signal via P2 receptors in osteoblasts.
- P2X7 receptors are ATP-gated cation channels involved in bone formation and mechanotransduction.
- P2X7 receptor disruption impairs periosteal bone formation and skeletal response to mechanical stimuli.
Purpose of the Study:
- Investigate signaling pathways downstream of P2X7 receptor activation in osteoblasts.
- Elucidate the role of P2X7 receptors in mediating membrane blebbing.
- Identify key molecular players in the P2X7-induced signaling cascade.
Main Methods:
- Live cell imaging of osteoblasts stimulated with various nucleotides (ATP, BzATP, UTP, UDP, 2-methylthio-ADP).
- Utilized wild-type and P2X7 knock-out mouse calvarial osteoblasts.
- Employed pharmacological inhibitors for phospholipase D, phospholipase A2, and Rho-associated kinase.
- Assessed the role of lysophosphatidic acid (LPA) and its receptors.
Main Results:
- ATP and BzATP induced dynamic membrane blebbing in wild-type osteoblasts, dependent on P2X7 receptors.
- P2X7 activation led to phospholipase D and A2 activation, producing LPA.
- LPA induced membrane blebbing independently of P2X7 and phospholipase activity, but required LPA receptors.
- Rho-associated kinase inhibition abolished blebbing induced by both P2X7 activation and LPA.
Conclusions:
- A novel signaling axis links P2X7 receptors to LPA production via phospholipases in osteoblasts.
- LPA acts downstream of P2X7 receptors to induce membrane blebbing, mediated by LPA receptors.
- The P2X7-LPA-Rho-associated kinase pathway is crucial for P2X7-stimulated osteogenesis and mechanotransduction in bone.
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