Localized mutations in the gene encoding the cytoskeletal protein filamin A cause diverse malformations in humans.
Details
Serval ID
serval:BIB_DE58C2F88502
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Localized mutations in the gene encoding the cytoskeletal protein filamin A cause diverse malformations in humans.
Journal
Nature genetics
Working group(s)
OPD-spectrum Disorders Clinical Collaborative Group
ISSN
1061-4036 (Print)
ISSN-L
1061-4036
Publication state
Published
Issued date
04/2003
Peer-reviewed
Oui
Volume
33
Number
4
Pages
487-491
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Publication Status: ppublish
Abstract
Remodeling of the cytoskeleton is central to the modulation of cell shape and migration. Filamin A, encoded by the gene FLNA, is a widely expressed protein that regulates re-organization of the actin cytoskeleton by interacting with integrins, transmembrane receptor complexes and second messengers. We identified localized mutations in FLNA that conserve the reading frame and lead to a broad range of congenital malformations, affecting craniofacial structures, skeleton, brain, viscera and urogenital tract, in four X-linked human disorders: otopalatodigital syndrome types 1 (OPD1; OMIM 311300) and 2 (OPD2; OMIM 304120), frontometaphyseal dysplasia (FMD; OMIM 305620) and Melnick-Needles syndrome (MNS; OMIM 309350). Several mutations are recurrent, and all are clustered into four regions of the gene: the actin-binding domain and rod domain repeats 3, 10 and 14/15. Our findings contrast with previous observations that loss of function of FLNA is embryonic lethal in males but manifests in females as a localized neuronal migration disorder, called periventricular nodular heterotopia (PVNH; refs. 3-6). The patterns of mutation, X-chromosome inactivation and phenotypic manifestations in the newly described mutations indicate that they have gain-of-function effects, implicating filamin A in signaling pathways that mediate organogenesis in multiple systems during embryonic development.
Keywords
Abnormalities, Multiple/genetics, Alleles, Amino Acid Sequence, Base Sequence, Chromosome Mapping, Chromosomes, Human, X, Contractile Proteins/genetics, Cytoskeleton/metabolism, DNA Mutational Analysis, Female, Filamins, Genetic Linkage, Humans, Introns, Male, Microfilament Proteins/genetics, Models, Genetic, Models, Molecular, Molecular Sequence Data, Mutation, Phylogeny, Polymorphism, Genetic, Polymorphism, Single Nucleotide, Sequence Homology, Amino Acid, Signal Transduction, Syndrome, Tissue Distribution
Pubmed
Web of science
Open Access
Yes
Create date
06/06/2013 20:48
Last modification date
24/02/2024 7:34