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Prickle1 regulates differentiation of frontal bone osteoblasts
Yong Wan1, Brandi Lantz1, Brian J Cusack1
1Center for Craniofacial Regeneration, Department of Oral Biology, School of Dental Medicine, University of Pittsburgh, Pittsburgh, PA, USA.
Insights
Prickle1 protein is crucial for skull development, regulating osteoblast migration and differentiation. Its dysfunction leads to skull defects like enlarged fontanelles and smaller frontal bones in mouse models.
Area of Science:
- Developmental biology
- Craniofacial development
- Molecular signaling
Background:
- Skull bone development relies on osteoblast migration and differentiation.
- The Wnt/Planar cell polarity (Wnt/PCP) pathway is vital for cell movement.
- Prickle1 is a key regulator within the Wnt/PCP pathway.
Purpose of the Study:
- To investigate the role of Prickle1 in skull development.
- To analyze the impact of a specific Prickle1 mutation (Prickle1Bj) on skull formation.
Main Methods:
- Utilized the Prickle1Beetlejuice (Prickle1Bj/Bj) mouse model.
- Observed craniofacial phenotypes and analyzed signaling pathways (Wnt/β-catenin, Hedgehog).
- Examined osteoblast precursor proliferation, death, migration, and differentiation.
Main Results:
- Prickle1Bj/Bj mutants exhibit microcephaly, enlarged fontanelles, and smaller frontal bones.
- Craniofacial defects include cleft lip, cleft palate, and reduced head growth.
- Osteoblast precursors show delayed differentiation and reduced migratory marker expression, not altered proliferation or death.
Conclusions:
- Prickle1 is essential for osteoblast precursor migration and differentiation during frontal bone development.
- Prickle1 dysfunction contributes to specific skull and craniofacial malformations.
Abstract:
Enlarged fontanelles and smaller frontal bones result in a mechanically compromised skull. Both phenotypes could develop from defective migration and differentiation of osteoblasts in the skull bone primordia. The Wnt/Planar cell polarity (Wnt/PCP) signaling pathway regulates cell migration and movement in other tissues and led us to test the role of Prickle1, a core component of the Wnt/PCP pathway, in the skull. For these studies, we used the missense allele of Prickle1 named Prickle1Beetlejuice (Prickle1Bj). The Prickle1Bj/Bj mutants are microcephalic and develop enlarged fontanelles between insufficient frontal bones, while the parietal bones are normal. Prickle1Bj/Bj mutants have several other craniofacial defects including a midline cleft lip, incompletely penetrant cleft palate, and decreased proximal-distal growth of the head. We observed decreased Wnt/β-catenin and Hedgehog signaling in the frontal bone condensations of the Prickle1Bj/Bj mutants. Surprisingly, the smaller frontal bones do not result from defects in cell proliferation or death, but rather significantly delayed differentiation and decreased expression of migratory markers in the frontal bone osteoblast precursors. Our data suggests that Prickle1 protein function contributes to both the migration and differentiation of osteoblast precursors in the frontal bone.
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