Molecular diagnosis of neurofibromatosis type 1: 2 years experience

被引:0
作者
Siân Griffiths
Peter Thompson
Ian Frayling
Meena Upadhyaya
机构
[1] University Hospital of Wales,Institute of Medical Genetics
来源
Familial Cancer | 2007年 / 6卷
关键词
Denaturing High Performance Liquid Chromatography (dHPLC); Fluorescence In-Situ Hybridisation (FISH); Multiplex Ligation-Dependent Probe Amplification (MLPA); Mutation; Neurofibromatosis Type 1 (NF1); Polymerase chain reaction (PCR); Polymorphism; Sequencing; UK Genetic Testing Network (UKGTN);
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摘要
Our experience of providing an NF1 gene diagnostic mutation detection service as part of the UK Genetic Testing Network (UKGTN) is presented. A total of 169 unrelated individuals suspected of having neurofibromatosis type I (NF1) were referred for NF1 diagnostic testing over a 2 year period. Mutation analysis of the entire NF1 coding region and the flanking splice sites was carried out, and included the use of a combination of FISH, dHPLC and MLPA. Possible disease causing mutations were identified in 109 (64%) cases. These comprised 88 different sequence alterations, of which 57 were novel. Out of the 169 cases referred, there were 102 patients with reliable clinical data, of whom 78 satisfied the NIH diagnostic criteria for NF1. Within this better defined cohort of NF1 patients, NF1 mutations were identified in 61 individuals (78%), showing the importance of clinical selection on overall test sensitivity, and highlighting the problem of full clinical data collection in the audit of routine services. As mutation detection technologies advance, facilitating direct sequencing of all coding and flanking non-coding regions of the NF1 gene, the development of an even more cost-effective, quick and sensitive diagnostic test for future testing of NF1 is discussed.
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页码:21 / 34
页数:13
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[1]  
Cichowski K(2001)NF1 tumor suppressor gene function: 1narrowing the GAP Cell 104 593-604
[2]  
Jacks T(2000)Mutations affecting mRNA splicing are the most common molecular defects in patients with neurofibromatosis type 1 Hum Mol Genet 9 237-247
[3]  
Ars E(1995)Identification of neurofibromatosis 1 (NF1) homologous loci by direct sequencing, fluorescence in situ hybridization, and PCR amplification of somatic cell hybrids Genomics 30 476-485
[4]  
Serra E(2000)Mechanism of spreading of the highly related neurofibromatosis type 1 (NF1) pseudogenes on chromosomes 2, 14 and 22 Eur J Hum Genet 8 209-214
[5]  
Garcia J(2005)Expression of NF1 pseudogenes Hum Mutat 26 487-488
[6]  
Kruyer H(1992)Prenatal diagnosis and presymptomatic detection of neurofibromatosis type 1 J Med Genet 29 180-183
[7]  
Gaona A(1992)Prenatal diagnosis of sporadic neurofibromatosis 1 Lancet 339 119-20
[8]  
Lazaro C(1988)NIH Consensus development conference statement. Neurofibromatosis Arch Neurol 45 575-8
[9]  
Estivill X(2002)Malignant peripheral nerve sheath tumours in neurofibromatosis 1 J Med Genet 39 311-314
[10]  
Purandare SM(1993)An analysis of variation in expression of neurofibromatosis (NF) type 1 (NF1): evidence for modifying genes Am J Hum Genet 53 305-313