Cellular and molecular basis of fibrous dysplasia

Authors
Citation
Pj. Marie, Cellular and molecular basis of fibrous dysplasia, HIST HISTOP, 16(3), 2001, pp. 981-988
Citations number
73
Categorie Soggetti
Medical Research Diagnosis & Treatment
Journal title
HISTOLOGY AND HISTOPATHOLOGY
ISSN journal
02133911 → ACNP
Volume
16
Issue
3
Year of publication
2001
Pages
981 - 988
Database
ISI
SICI code
0213-3911(200107)16:3<981:CAMBOF>2.0.ZU;2-B
Abstract
Recent advances have been made in the cellular and molecular mechanisms inv olved in monostotic and polyostotic fibrous dysplasia, a rare nonmalignant disease causing bone deformations and fractures. The molecular basis of fib rous dysplasia has been clarified when mutations affecting the stimulatory a subunit of G protein (Gs) have been found in dysplastic bone lesions. The histological analysis of dysplastic lesions revealed that the mutations in Gs alpha. caused abnormalities in cells of the osteoblastic lineage and th erefore in the bone matrix. Further in vitro analyses of bone cells from mu tant dysplastic bone lesions revealed that the abnormal deposition of immat ure bone matrix in fibrous dysplasia results from decreased differentiation and increased proliferation of osteoblastic cells. Finally, the signaling pathway involved in these osteoblastic abnormalities has been identified. I t is now apparent that the constitutive elevation in cAMP level induced by the Gsa mutations leads to alterations in the expression of several target genes whose promoters contain cAMP-responsive elements, such as c-fos, c-ju n, Il-6 and Il-11. This in turn affects the transcription and expression of downstream genes and results in the alterations of osteoblast recruitment and function in dysplastic bone lesions. These mechanisms provide a cellula r and molecular basis for the alterations in bone cells and bone matrix in fibrous dysplasia.