Frequent genomic loss at chr16p13.2 is associated with poor prognosis in colorectal cancer

被引:28
作者
Andersen, Claus Lindbjerg [1 ]
Lamy, Philippe [1 ,2 ]
Thorsen, Kasper [1 ]
Kjeldsen, Eigil [3 ]
Wikman, Friedrik [1 ]
Villesen, Palle [2 ]
Oster, Bodil [1 ]
Laurberg, Soren [4 ]
Omtoft, Torben Falck [1 ]
机构
[1] Aarhus Univ Hosp, Dept Mol Med MOMA, DK-8200 Aarhus N, Denmark
[2] Univ Aarhus, Bioinformat Res Ctr, Aarhus C, Denmark
[3] Aarhus Univ Hosp, Dept Hematol, DK-8200 Aarhus N, Denmark
[4] Aarhus Univ Hosp, Dept Surg P, DK-8200 Aarhus N, Denmark
关键词
SNP array; copy-number alteration; chr16p; prognosis; colorectal cancer; COPY NUMBER CHANGES; COLON-CANCER; CHROMOSOMAL INSTABILITY; ADJUVANT CHEMOTHERAPY; STAGE-II; CARCINOMA; ADENOMAS; TUMORS; HYBRIDIZATION; FLUOROURACIL;
D O I
10.1002/ijc.25841
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Genomic alterations play important roles in colorectal cancer (CRC) carcinogenesis. Here, we aimed to identify and characterize recurrent copy-number alterations (CNAs) associated with clinical outcome of CRC by the use of single nucleotide polymorphism arrays, genomic quantitative PCR (qPCR) and fluorescence in situ hybridization (FISH). Colorectal neoplasia specimens and paired germline samples from 144 patients (40 adenomas and 104 carcinomas) as well as 40 CRC cell lines were investigated. This large dataset revealed frequent loss, including homozygous loss, at chr16p13.2 (from 5.9 to 7.42Mb). The loss was observed in 30% of adenomas and even more frequently in carcinomas, 56%, indicating that the loss define a subset of adenomas with a propensity for invasion. Consistent with this, the loss occurred twice as frequent in villous (40%) as in tubular adenomas (20%). The loss occurred independently of microsatellite stability and could be validated by qPCR in an independent sample cohort (n = 71). In Stage II/III, microsatellite stable (MSS) CRC it was associated with poor recurrence free survival (hazard ratio 2.4; p = 0.02; Multivariate Cox regression analysis). No transcriptional consequences of the losses were observed, and the only gene, A2BP1, located in the region showed no mutations. Correlation with other CNAs was established for chr3p22 in carcinomas and chr20p (inverse) in adenomas. FISH documented the chr16p13.2 region to be involved in complex structural rearrangements that included translocation to chr3p22 in some cases. The findings indicate that structural rearrangements involving chr16p13.2 are very frequent in colorectal neoplasia, often lead to homozygous deletion, and are associated with poor clinical outcome.
引用
收藏
页码:1848 / 1858
页数:11
相关论文
共 39 条
[21]   Common and distinct genomic events in sporadic colorectal cancer and diverse cancer types [J].
Martin, Eric S. ;
Tonon, Giovanni ;
Sinha, Raktim ;
Xiao, Yonghong ;
Feng, Bin ;
Kimmelman, Alec C. ;
Protopopov, Alexei ;
Ivanova, Elena ;
Brennan, Cameron ;
Montgomery, Kate ;
Kucherlapati, Raju ;
Bailey, Gerald ;
Redston, Mark ;
Chin, Lynda ;
DePinho, Ronald A. .
CANCER RESEARCH, 2007, 67 (22) :10736-10743
[22]  
Mitelman F., 2010, MITELMAN DATABASE CH
[23]   Incidence and patterns of recurrence following curative resection for colorectal carcinoma [J].
Obrand, DI ;
Gordon, PH .
DISEASES OF THE COLON & RECTUM, 1997, 40 (01) :15-24
[24]   Chromosomal instability in flat adenomas and carcinomas of the colon [J].
Postma, C ;
Hermsen, MAJA ;
Coffa, J ;
Baak, JPA ;
Mueller, JD ;
Mueller, E ;
Bethke, B ;
Schouten, JP ;
Stolte, M ;
Meijer, GA .
JOURNAL OF PATHOLOGY, 2005, 205 (04) :514-521
[25]   DNA copy number profiles of primary tumors as predictors of response to chemotherapy in advanced colorectal cancer [J].
Postma, C. ;
Koopman, M. ;
Buffart, T. E. ;
Eijk, P. P. ;
Carvalho, B. ;
Peters, G. J. ;
Ylstra, B. ;
van Krieken, J. H. ;
Punt, C. J. A. ;
Meijer, G. A. .
ANNALS OF ONCOLOGY, 2009, 20 (06) :1048-1056
[26]   Integrative Approach for Prioritizing Cancer Genes in Sporadic Colon Cancer [J].
Reid, James F. ;
Gariboldi, Manuela ;
Sokolova, Viktorija ;
Capobianco, Patrizia ;
Lampis, Andrea ;
Perrone, Federica ;
Signoroni, Stefano ;
Costa, Aurora ;
Leo, Ermanno ;
Pilotti, Silvana ;
Pierotti, Marco A. .
GENES CHROMOSOMES & CANCER, 2009, 48 (11) :953-962
[27]   Distinct chromosomal imbalances in nonpolypoid and polypoid colorectal adenomas indicate different genetic pathways in the development of colorectal neoplasms [J].
Richter, H ;
Slezak, P ;
Walch, A ;
Werner, M ;
Braselmann, H ;
Jaramillo, E ;
Öst, Å ;
Hirata, I ;
Takahama, K ;
Zitzelsberger, H .
AMERICAN JOURNAL OF PATHOLOGY, 2003, 163 (01) :287-294
[28]   SpliceCenter: A suite of web-based bioinformatic applications for evaluating the impact of alternative splicing on RT-PCR, RNAi, microarray, and peptide-based studies [J].
Ryan, Michael C. ;
Zeeberg, Barry R. ;
Caplen, Natasha J. ;
Cleland, James A. ;
Kahn, Ari B. ;
Liu, Hongfang ;
Weinstein, John N. .
BMC BIOINFORMATICS, 2008, 9 (1)
[29]   o-Nitrotoluene-induced large intestinal tumors in B6C3F1 mice model human colon cancer in their molecular pathogenesis [J].
Sills, RC ;
Hong, HL ;
Flake, G ;
Moomaw, C ;
Clayton, N ;
Boorman, GA ;
Dunnick, J ;
Devereux, TR .
CARCINOGENESIS, 2004, 25 (04) :605-612
[30]   The cancer genome [J].
Stratton, Michael R. ;
Campbell, Peter J. ;
Futreal, P. Andrew .
NATURE, 2009, 458 (7239) :719-724