Molecular characterization of the spectrum of genomic deletions in the mismatch repair genes MSH2, MLH1, MSH6, and PMS2 responsible for hereditary Nonpolyposis colorectal cancer (HNPCC)

被引:103
作者
van der Klift, H
Wijnen, J
Wagner, A
Verkuilen, P
Tops, C
Otway, R
Kohonen-Corish, M
Vasen, H
Oliani, C
Barana, D
Moller, P
DeLozier-Blanchet, C
Hutter, P
Foulkes, W
Lynch, H
Burn, J
Möslein, G
Fodde, R
机构
[1] Erasmus Univ, Med Ctr, Dept Pathol, Josephine Nefkens Inst, NL-3000 DR Rotterdam, Netherlands
[2] Leiden Univ, Med Ctr, Ctr Human & Clin Genet, Leiden, Netherlands
[3] Erasmus Univ, Dept Clin Genet, Med Ctr, NL-3000 DR Rotterdam, Netherlands
[4] John Curtin Sch Med Res, Canberra, ACT, Australia
[5] Garvan Inst Med Res, Canc Res Program, Sydney, NSW, Australia
[6] Netherlands Fdn Detect Hereditary Tumours, Leiden, Netherlands
[7] Univ Verona, I-37100 Verona, Italy
[8] Azienda Osped, Div Clincizzata Oncol Med, Verona, Italy
[9] Norwegian Radium Hosp, Dept Canc Genet, Oslo, Norway
[10] Univ Geneva, Sch Med, Div Med Genet, CH-1211 Geneva, Switzerland
[11] ICHV, Genet Unit, Sion, Switzerland
[12] McGill Univ, Dept Oncol & Human Genet, Program Canc Genet, Montreal, PQ, Canada
[13] Creighton Univ, Sch Med, Dept Prevent Med, Omaha, NE 68178 USA
[14] Univ Newcastle Upon Tyne, Inst Human Genet, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
[15] Univ Dusseldorf, Dept Surg, D-4000 Dusseldorf, Germany
关键词
D O I
10.1002/gcc.20219
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
A systematic search by Southern blot analysis in a cohort of 439 hereditary nonpolyposis colorectal cancer (HNPCC) families for genomic rearrangements in the main mismatch repair (MMR) genes, namely, MSH2, MLHI, MSH6, and PMS2, identified 48 genomic rearrangements causative of this inherited predisposition to colorectal cancer in 68 unrelated kindreds. Twenty-nine of the 48 rearrangements were found in MSH2, 13 in MLH 1, 2 in MSH6, and 4 in PMS2. The vast majority were deletions, although one previously described large inversion, an intronic insertion, and a more complex rearrangement also were found. Twenty-four deletion breakpoints have been identified and sequenced in order to determine the underlying recombination mechanisms. Most fall within repetitive sequences, mainly Alu repeats, in agreement with the differential distribution of deletions between the MSH2 and MLH1 genes: the higher number and density of Alu repeats in MSH2 corresponded with a higher incidence of genomic rearrangement at this disease locus when compared with other MMR genes. Long interspersed nuclear element (LINE) repeats, relatively abundant in, for example, MLH I, did not seem to contribute to the genesis of the deletions, presumably because of their older evolutionary age and divergence among individual repeat units when compared with short interspersed nuclear element (SINE) repeats, including Alu repeats. Moreover, Southern blot analysis of the introns and the genomic regions flanking the MMR genes allowed us to detect 6 novel genomic rearrangements that left the coding region of the disease-causing gene intact. These rearrangements comprised 4 deletions upstream of the coding region of MSH2 (3 cases) and MSH6 (I case), a 2-kb insertion in intron 7 of PMS2, and a small (459-bp) deletion in intron 13 of MLHI. The characterization of these genomic rearrangements underlines the importance of genomic deletions in the etiology of HNPCC and will facilitate the development of PCR-based tests for their detection in diagnostic laboratories. (c) 2005 Wiley-Liss, Inc.
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页码:123 / 138
页数:16
相关论文
共 59 条
[1]  
Aarnio M, 1999, INT J CANCER, V81, P214, DOI 10.1002/(SICI)1097-0215(19990412)81:2<214::AID-IJC8>3.3.CO
[2]  
2-C
[3]  
Akiyama Y, 1997, CANCER RES, V57, P3920
[4]   Spectrum of genetic alterations in Muir-Torre syndrome is the same as in HNPCC [J].
Barana, D ;
Cetto, GL ;
Oliani, C ;
van der Klift, H ;
Wijnen, J ;
Fodde, R ;
Dalla Longa, E ;
Radice, P .
AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2004, 125A (03) :318-319
[5]   MUTATION IN THE DNA MISMATCH REPAIR GENE HOMOLOG HMLH1 IS ASSOCIATED WITH HEREDITARY NONPOLYPOSIS COLON-CANCER [J].
BRONNER, CE ;
BAKER, SM ;
MORRISON, PT ;
WARREN, G ;
SMITH, LG ;
LESCOE, MK ;
KANE, M ;
EARABINO, C ;
LIPFORD, J ;
LINDBLOM, A ;
TANNERGARD, P ;
BOLLAG, RJ ;
GODWIN, AR ;
WARD, DC ;
NORDENSKJOLD, M ;
FISHEL, R ;
KOLODNER, R ;
LISKAY, RM .
NATURE, 1994, 368 (6468) :258-261
[6]   Diet and cancer prevention: the Concerted Action Polyp Prevention (CAPP) Studies [J].
Burn, J ;
Chapman, PD ;
Bishop, DT ;
Mathers, J .
PROCEEDINGS OF THE NUTRITION SOCIETY, 1998, 57 (02) :183-186
[7]   Unequal homologous recombination between LINE-1 elements as a mutational mechanism in human genetic disease [J].
Burwinkel, B ;
Kilimann, MW .
JOURNAL OF MOLECULAR BIOLOGY, 1998, 277 (03) :513-517
[8]   Topoisomerase-I- and Alu-mediated genomic deletions of the APC gene in familial adenomatous polyposis [J].
Cao, X ;
Eu, KW ;
Seow-Choen, F ;
Zhao, Y ;
Cheah, PY .
HUMAN GENETICS, 2001, 108 (05) :436-442
[9]  
Chang-Liao KS, 2001, ELEC SOC S, V2001, P1
[10]  
Charbonnier F, 2000, CANCER RES, V60, P2760