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Mutations in the gene encoding filamin B disrupt vertebral segmentation, joint formation and skeletogenesis.

Authors :
King, Lily M.
Morgan, Timothy
Sebald, Eiman T.
Bertolotto, Cristina
Wachsmann-Hogiu, Sebastian
Acuna, Dora
Shapiro, Sandor S.
Takafuta, Toshiro
Aftimos, Salim
Chong Ae Kim
Firth, Helen
Steiner, Carlos E.
Cormier-Daire, Valerie
Superti-Furga, Andrea
Bonafe, Luisa
Graham Jr, John M.
Grix, Arthur
Bacino, Carlos A.
Allanson, Judith
Bialer, Martin G.
Source :
Nature Genetics. Apr2004, Vol. 36 Issue 4, p405-410. 6p. 13 Color Photographs, 6 Black and White Photographs, 3 Diagrams, 1 Chart.
Publication Year :
2004

Abstract

The filamins are cytoplasmic proteins that regulate the structure and activity of the cytoskeleton by cross-linking actin into three-dimensional networks, linking the cell membrane to the cytoskeleton and serving as scaffolds on which intracellular signaling and protein trafficking pathways are organized (reviewed in refs. 1,2). We identified mutations in the gene encoding filamin B in four human skeletal disorders. We found homozygosity or compound heterozygosity with respect to stop-codon mutations in autosomal recessive spondylocarpotarsal syndrome (SCT, OMIM 272460) and missense mutations in individuals with autosomal dominant Larsen syndrome (OMIM 150250) and the perinatal lethal atelosteogenesis I and III phenotypes (AOI, OMIM 108720; AOIII, OMIM 108721). We found that filamin B is expressed in human growth plate chondrocytes and in the developing vertebral bodies in the mouse. These data indicate an unexpected role in vertebral segmentation, joint formation and endochondral ossification for this ubiquitously expressed cytoskeletal protein. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10614036
Volume :
36
Issue :
4
Database :
Academic Search Index
Journal :
Nature Genetics
Publication Type :
Academic Journal
Accession number :
12674200
Full Text :
https://doi.org/10.1038/ng1319