The GAP-related domain of tuberin, the product of the TSC2 gene, is a target for missense mutations in tuberous sclerosis.
Open Access
- 1 October 1997
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 6 (11), 1991-1996
- https://doi.org/10.1093/hmg/6.11.1991
Abstract
Tuberous sclerosis is an autosomal dominant trait in which the dysregulation of cellular proliferation and differentiation results in the development of hamar-tomatous growths in many organs. The TSC2 gene is one of two genes determining tuberous sclerosis. Inactivating germline mutations of TSC2 in patients with tuberous sclerosis and somatic loss of heterozygosity at the TSC2 locus in the associated hamartomas indicate that TSC2 functions as a tumour suppressor gene and that loss of function is critical to expression of the tuberous sclerosis phenotype. The TSC2 product, tuberin, has a region of homology with the GTPase activating protein rap1GAP and stimulates the GTPase activity of rap1a and rab5a in vitro. Here we show that the region of homology between tuberin and human rap1GAP and the murine GAP mSpa1 is more extensive than previously reported and spans ∼160 amino acid residues encoded within exons 34–38 of the TSC2 gene. Single strand conformation polymorphism analysis of these exons in 173 unrelated patients with tuberous sclerosis and direct sequencing of variant conformers together with study of additional family members enabled characterisation of disease associated mutations in 14 cases. Missense mutations, which occurred in exons 36, 37 and 38 were identified in eight cases, four of whom shared the same recurrent change P1675L. Each of the five different missense mutations identified was shown to occur de novo in at least one sporadic case of tuberous sclerosis. The high proportion of missense mutations detected in the region of the TSC2 gene encoding the GAP-related domain supports its key role in the regulation of cellular growth.Keywords
This publication has 23 references indexed in Scilit:
- Loss of heterozygosity in tuberous sclerosis hamartomas.Journal of Medical Genetics, 1996
- Expression and differential splicing of the mouse TSC2 homologMammalian Genome, 1996
- Comparative Analysis and Genomic Structure of the Tuberous Sclerosis 2 (TSC2) Gene in Human and PufferfishHuman Molecular Genetics, 1996
- cDNA structure, alternative splicing and exon—intron organization of the predisposing tuberous scelerosis (Tsc2) gene of the Eker rat modelNucleic Acids Research, 1995
- Identification of Tuberin, the Tuberous Sclerosis-2 Product. TUBERIN POSSESSES SPECIFIC Rap1GAP ACTIVITYJournal of Biological Chemistry, 1995
- Deletion of the TSC2 and PKD1 genes associated with severe infantile polycystic kidney disease — a contiguous gene syndromeNature Genetics, 1994
- Two loci for Tuberous Sclerosis: one on 9q34 and one on 16p13Annals of Human Genetics, 1994
- Identification and characterization of the tuberous sclerosis gene on chromosome 16Cell, 1993
- Molecular cloning of a GTPase activating protein specific for the Krev-1 protein p21rap1Cell, 1991
- Genetic aspects of tuberous sclerosis in the west of Scotland.Journal of Medical Genetics, 1989