Mutational analysis of the DAL-1/4.1B tumour-suppressor gene locus in meningiomas.
Mutational analysis of the DAL-1/4.1B tumour-suppressor gene locus in meningiomas.
The DAL-1/41B gene (differentially expressed in adenocarcinoma of the lung), located in the chromosome 18p11.3 region, belongs to the protein family 4.1 (membrane-associated proteins), which includes the product of the NF2 gene (merlin), and the proteins, ezrin, radixin, and moesin. DAL-1/4.1B is normally expressed at high levels in the brain, with lower levels in the kidney, intestine, and testis. DAL-1/4.1B is known to suppress growth in meningiomas and can be lost in about 60% of sporadic meningiomas as an early event in tumorigenesis; it is a critical growth regulator in the pathogenesis of neoplastic transformation. The similarity between the DAL-1/4.1B protein and merlin, with their high levels of expression in the brain and their recurrent loss in meningiomas, and the lack of previous DAL-1/4.1B mutational analysis reports initiated this mutational study of DAL-1/4.1B in a series of 83 meningiomas. We found the following sequence variations; Ala555Thr (G1663A in exon 13) and Thr950Lys (C2849A in exon 19) in two cases each, and one case with a 5pb deletion (del taaaa) in intron 18. A polymorphism in exon 14 (C2112T/Thr704Thr, also known as C2166T) was also identified; the tumoral allelic constitutions were heterozygous C/T in 15, homo- or hemizygous C in 67 and hemizygous T in one tumour. The low mutational frequency in our study discounts sequence variations in DAL-1/4.1B as the main mechanism underlying participation of this gene in the neoplastic transformation of meningiomas, and suggests that other inactivating mechanisms, such as epigenetic changes, may participate in DAL1/4.1B silencing.
Base Sequence, Genotype, Tumor Suppressor Proteins, DNA Mutational Analysis, Microfilament Proteins, Mutation, Missense, Genetic Variation, Membrane Proteins, DNA, Neoplasm, Polymerase Chain Reaction, Polymorphism, Single Nucleotide, Gene Frequency, Mutation, Meningeal Neoplasms, Humans, Meningioma, Alleles, Polymorphism, Single-Stranded Conformational, Sequence Deletion
Base Sequence, Genotype, Tumor Suppressor Proteins, DNA Mutational Analysis, Microfilament Proteins, Mutation, Missense, Genetic Variation, Membrane Proteins, DNA, Neoplasm, Polymerase Chain Reaction, Polymorphism, Single Nucleotide, Gene Frequency, Mutation, Meningeal Neoplasms, Humans, Meningioma, Alleles, Polymorphism, Single-Stranded Conformational, Sequence Deletion
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