Rates of loss of heterozygosity and mitotic recombination in NF2 schwannomas, sporadic vestibular schwannomas and schwannomatosis schwannomas

被引:86
作者
Hadfield, K. D. [1 ]
Smith, M. J. [1 ]
Urquhart, J. E. [1 ]
Wallace, A. J. [1 ]
Bowers, N. L. [1 ]
King, A. T. [2 ]
Rutherford, S. A. [2 ]
Trump, D. [1 ]
Newman, W. G. [1 ]
Evans, D. G. [1 ]
机构
[1] Univ Manchester, St Marys Hosp, Manchester Acad Hlth Sci Ctr, Dept Med Genet, Manchester M13 9WL, Lancs, England
[2] Hope Hosp, Dept Neurosurg, Manchester, Lancs, England
关键词
mitotic recombination; schwannomatosis; SMARCB1; NF2; vestibular schwannoma; COMPARATIVE GENOMIC HYBRIDIZATION; FAMILIAL SCHWANNOMATOSIS; SMARCB1; IDENTIFICATION; NEUROFIBROMAS; METHYLATION; MUTATION; GENE; DNA;
D O I
10.1038/onc.2010.363
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Biallelic inactivation of the NF2 gene occurs in the majority of schwannomas. This usually involves a combination of a point mutation or multiexon deletion, in conjunction with either a second point mutation or loss of heterozygosity (LOH). We have performed DNA sequence and dosage analysis of the NF2 gene in a panel of 239 schwannoma tumours: 97 neurofibromatosis type 2 (NF2)-related schwannomas, 104 sporadic vestibular schwannomas (VS) and 38 schwannomatosis-related schwannomas. In total, we identified germline NF2 mutations in 86 out of 97 (89%) NF2 patients and a second mutational event in 77 out of 97 (79%). LOH was by far the most common form of second hit. A combination of microsatellite analysis with either conventional comparative genomic hybridization (CGH) or multiplex ligation-dependent probe amplification (MLPA) identified mitotic recombination (MR) as the cause of LOH in 14 out of 72 (19%) total evaluable tumours. Among sporadic VS, at least one NF2 mutation was identified by sequence analysis or MLPA in 65 out of 98 (66%) tumours. LOH occurred in 54 out of 96 (56%) evaluable tumours, but MR only accounted for 5 out of 77 (6%) tested. LOH was present in 28 out of 34 (82%) schwannomatosis-related schwannomas. In all eight patients who had previously tested positive for a germline SMARCB1 mutation, this involved loss of the whole, or part of the long arm, of chromosome 22. In contrast, 5 out of 22 (23%) tumours from patients with no germline SMARCB1 mutation exhibited MR. High-resolution Affymetrix SNP6 genotyping and copy number (CN) analysis (Affymetrix, Santa Clara, CA, USA) were used to determine the chromosomal breakpoint locations in tumours with MR. A range of unique recombination sites, spanning approximately 11.4Mb, were identified. This study shows that MR is a mechanism of LOH in NF2 and SMARCB1-negative schwannomatosis-related schwannomas, occurring less frequently in sporadic VS. We found no evidence of MR in SMARCB1-positive schwannomatosis, suggesting that susceptibility to MR varies according to the disease context. Oncogene (2010) 29, 6216-6221; doi:10.1038/onc.2010.363; published online 23 August 2010
引用
收藏
页码:6216 / 6221
页数:6
相关论文
共 17 条
[1]   Alterations in the SMARCB1 (INI1) tumor suppressor gene in familial schwannomatosis [J].
Boyd, C. ;
Smith, M. J. ;
Kluwe, L. ;
Balogh, A. ;
MacCollin, M. ;
Plotkin, S. R. .
CLINICAL GENETICS, 2008, 74 (04) :358-366
[2]   Evolutionary Breakpoints in the Gibbon Suggest Association between Cytosine Methylation and Karyotype Evolution [J].
Carbone, Lucia ;
Harris, R. Alan ;
Vessere, Gery M. ;
Mootnick, Alan R. ;
Humphray, Sean ;
Rogers, Jane ;
Kim, Sung K. ;
Wall, Jeffrey D. ;
Martin, David ;
Jurka, Jerzy ;
Milosavljevic, Aleksandar ;
de Jong, Pieter J. .
PLOS GENETICS, 2009, 5 (06)
[3]   Somatic loss of wild type NF1 allele in neurofibromas:: Comparison of NF1 microdeletion and non-microdeletion patients [J].
De Raedt, Thomas ;
Maertens, Ophelia ;
Chmara, Magdalena ;
Brems, Hilde ;
Heyns, Ine ;
Sciot, Raf ;
Majounie, Elisa ;
Upadhyaya, Meena ;
De Schepper, Sofie ;
Speleman, Frank ;
Messiaen, Ludwine ;
Vermeesch, Joris Robert ;
Legius, Eric .
GENES CHROMOSOMES & CANCER, 2006, 45 (10) :893-904
[4]   The DNA sequence of human chromosome 22 [J].
Dunham, I ;
Shimizu, N ;
Roe, BA ;
Chissoe, S ;
Dunham, I ;
Hunt, AR ;
Collins, JE ;
Bruskiewich, R ;
Beare, DM ;
Clamp, M ;
Smink, LJ ;
Ainscough, R ;
Almeida, JP ;
Babbage, A ;
Bagguley, C ;
Balley, J ;
Barlow, K ;
Bates, KN ;
Beasley, O ;
Bird, CP ;
Blakey, S ;
Bridgeman, AM ;
Buck, D ;
Burgess, J ;
Burrill, WD ;
Burton, J ;
Carder, C ;
Carter, NP ;
Chen, Y ;
Clark, G ;
Clegg, SM ;
Cobley, V ;
Cole, CG ;
Collier, RE ;
Connor, RE ;
Conroy, D ;
Corby, N ;
Coville, GJ ;
Cox, AV ;
Davis, J ;
Dawson, E ;
Dhami, PD ;
Dockree, C ;
Dodsworth, SJ ;
Durbin, RM ;
Ellington, A ;
Evans, KL ;
Fey, JM ;
Fleming, K ;
French, L .
NATURE, 1999, 402 (6761) :489-495
[5]   Low-copy repeats mediate the common 3-Mb deletion in patients with velo-cardio-facial syndrome [J].
Edelmann, L ;
Pandita, RK ;
Morrow, BE .
AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 64 (04) :1076-1086
[6]  
EVANS DGR, 1992, Q J MED, V84, P603
[7]  
Gonzalez-Gomez P, 2003, CLIN CANCER RES, V9, P5601
[8]   Molecular characterisation of SMARCB1 and NF2 in familial and sporadic schwannomatosis [J].
Hadfield, K. D. ;
Newman, W. G. ;
Bowers, N. L. ;
Wallace, A. ;
Bolger, C. ;
Colley, A. ;
McCann, E. ;
Trump, D. ;
Prescott, T. ;
Evans, D. G. R. .
JOURNAL OF MEDICAL GENETICS, 2008, 45 (06) :332-339
[9]   Germline mutation of INI1/SMARCB1 in familial schwannomatosis [J].
Hulsebos, Theo J. M. ;
Plomp, Astrid S. ;
Wolterman, Ruud A. ;
Robanus-Maandag, Els C. ;
Baas, Frank ;
Wesseling, Pieter .
AMERICAN JOURNAL OF HUMAN GENETICS, 2007, 80 (04) :805-810
[10]   Preparation, labelling and detection of DNA from archival tissue sections suitable for comparative genomic hybridization [J].
James, L ;
Varley, J .
CHROMOSOME RESEARCH, 1996, 4 (02) :163-164