INVESTIGADORES
BORKOSKY Silvia Susana
congresos y reuniones científicas
Título:
Gene expression of matrix proteins in Cbfa1-knockout mice
Autor/es:
SILVIA S. BORKOSKY; HIDETSUGU TSUJIGIWA; YOU JIN LEE; ANDREA P. RODRIGUEZ; ROSARIO RIVERA; YOSHIFUMI KOMORI; HITOSHI NAGATSUKA
Lugar:
Kokura
Reunión:
Congreso; The 13th Annual Meeting of the Society for Hard Tissue Regenerative Biology & 3rd Asian Science Seminar; 2004
Institución organizadora:
Kyushu Dental College
Resumen:
Odontogenesis and osteogenesis are two distinct yet closely related processes that share common signaling pathways including regulatory control by Cbfa1. Although Cbfa1 is weIl recognized as the master regulator of osteoblastic differentiation, little is known of its precise role during odontogenesis. We sought to clarify this by examining morphogenesis of teeth and matrix protein gene expression in Cbfa1-knockout mice at ed 17.5 and day 0 of birth, and comparing it with mandible bone development. Results demonstrated morphological and functional differentiation differences between these two processes: incisor tooth germ showed morphological and functional differentiation of odontoblasts with expression of osteopontin and osteocalcin whereas the presumptive mandible bone-forming site showed lack of osteoblastic differentiation, and no expression of these two matrix proteins. Stage-specific and cytodifferentiation differences were also observed between incisor and molar tooth germs: incisor tooth germ progressed to the bell stage whereas molar tooth germ showed maturational arrest at bud to cap stage. Present findings suggest that 1. The transcription factor Cbfa1 is associated with morphogenesis of teeth and matrix protein gene expression, 2. Compared to the incisor tooth germ, the molar tooth germ is more strongly subjected to control by Cbfa1, and 3. In Cbfa1-knockout mice, the odontoblast-like cells in the incisor and the spindle cells in the presumptive mandible forming region showed different patterns of gene expression of matrix proteins common to teeth and bones.