Results of a genome-wide linkage analysis in prostate cancer families ascertained through the ACTANE consortium

被引:30
作者
Edwards, S
Meitz, J
Hope, Q
Bullock, S
Hamoudi, R
Ardern-Jones, A
Southgate, C
Dowe, A
Coleman, K
Dearnaley, D
Eeles, R
Evans, C
Teare, MD
Easton, D
Hopper, J
Giles, G
English, D
Southey, M
Foulkes, WD
Hamel, N
Narod, S
Simard, J
Badzioch, M
Amos, C
Heimdal, K
Mahle, L
Moller, P
Wessel, N
Andersen, T
Bishop, T
机构
[1] Inst Canc Res, Sutton SM2 5PT, Surrey, England
[2] Strangeways Res Labs, Canc Res UK Genet Epidemiol Unit, Cambridge CB1 8RN, England
[3] Canc Council Victoria, Canc Epidemiol Ctr, Carlton, Vic 3053, Australia
[4] Univ Melbourne, Ctr Genet Epidemiol, Carlton, Vic 3053, Australia
[5] McGill Univ, Div Med Genet, Montreal, PQ, Canada
[6] CHU Laval, Res Ctr, Oncol & Mol Endocrinol Res Ctr, Quebec City, PQ G1V 4G2, Canada
[7] Univ Laval, Quebec City, PQ, Canada
[8] Univ Toronto, Ctr Res Womens Hlth, Toronto, ON, Canada
[9] Univ Texas, MD Anderson Canc Ctr, Houston, TX 77030 USA
[10] Univ Washington, Med Ctr, Div Med Genet, Seattle, WA 98105 USA
[11] Norwegian Radium Hosp, Unit Med Genet, N-0310 Oslo, Norway
[12] Ullevaal Univ Hosp, Dept Oncol, Oslo, Norway
[13] St James Univ Hosp, Canc Res UK Genet Epidemiol Lab, Eu Biomed Prostate Canc Linkage Consortium, Leeds LS9 7TF, W Yorkshire, England
关键词
prostate cancer; linkage; genome search; ACTANE;
D O I
10.1002/pros.10301
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND. The aggregation of prostate cancer within families suggests a major inherited component to the disease. Genetic linkage studies have identified several chromosomal regions that may contain prostate cancer susceptibility loci, but none has been definitively implicated. METHODS. We performed a genome-wide linkage search based on 64 families, 63 with at least 3 cases of prostate cancer, ascertained in five countries. The majority of cases from these centers presented with clinically detected disease. Four hundred and one polymorphic markers were typed in 268 individuals. Multipoint heterogeneity analysis was conducted under three models of susceptibility; non-parametric analyses were also performed. RESULTS. Some weak evidence of linkage, under at least one of the genetic models, was observed to markers on chromosomes 2 (heterogeneity LOD (HLOD) = 1.15, P = 0.021), 3 (HLOD = 1.25, P = 0.016), 4 (HLOD = 1.28, P = 0.015), 5 (HLOD = 1.20, P = 0.019), 6 (HLOD = 1.41, P = 0.011), and 11 (HLOD = 1.24, P = 0.018), and in two regions on chromosome 18 (HLOD = 1.40, P = 0.011 and HLOD = 1.34, P = 0.013). There were no HLOD scores greater than 1.5 under any model, and no locus would be predicted to explain more than half of the genetic effect. No evidence in favor of linkage to previously suggested regions on chromosomes 1, 8,17, 20, or X was found. CONCLUSIONS. Genetic susceptibility to prostate cancer is likely to be controlled by many loci, with no single gene explaining a large fraction of the familial risk. Pooling of results from all available genome scans is likely to be required to obtain definitive linkage results.
引用
收藏
页码:270 / 279
页数:10
相关论文
共 52 条
[21]   Prostate cancer susceptibility locus on chromosome 1q: a confirmatory study [J].
Hsieh, CL ;
Oakley-Girvan, I ;
Gallagher, RP ;
Wu, AH ;
Kolonel, LN ;
Teh, CZ ;
Halpern, J ;
West, DW ;
Paffenbarger, RS ;
Whittemore, AS .
JOURNAL OF THE NATIONAL CANCER INSTITUTE, 1997, 89 (24) :1893-1894
[22]  
Johannesdottir G, 1996, CANCER RES, V56, P3663
[23]  
Kruglyak L, 1996, AM J HUM GENET, V58, P1347
[24]   GENETIC DISSECTION OF COMPLEX TRAITS [J].
LANDER, ES ;
SCHORK, NJ .
SCIENCE, 1994, 265 (5181) :2037-2048
[25]   Environmental and heritable factors in the causation of cancer - Analyses of cohorts of twins from Sweden, Denmark, and Finland. [J].
Lichtenstein, P ;
Holm, NV ;
Verkasalo, PK ;
Iliadou, A ;
Kaprio, J ;
Koskenvuo, M ;
Pukkala, E ;
Skytthe, A ;
Hemminki, K .
NEW ENGLAND JOURNAL OF MEDICINE, 2000, 343 (02) :78-85
[26]   Evidence for heterogeneity in recombination in the human pseudoautosomal region: High resolution analysis by sperm typing and radiation-hybrid mapping [J].
Lien, S ;
Szyda, J ;
Schechinger, B ;
Rappold, G ;
Arnheim, N .
AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 66 (02) :557-566
[27]   Linkage analysis of 49 high-risk families does not support a common familial prostate cancer susceptibility gene at 1q24-25 [J].
McIndoe, RA ;
Stanford, JL ;
Gibbs, M ;
Jarvik, GP ;
Brandzel, S ;
Neal, CL ;
Li, S ;
Gammack, JT ;
Gay, AA ;
Goode, EL ;
Hood, L ;
Ostrander, EA .
AMERICAN JOURNAL OF HUMAN GENETICS, 1997, 61 (02) :347-353
[28]   Statistical tests for detection of misspecified relationships by use of genome-screen data [J].
McPeek, MS ;
Sun, L .
AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 66 (03) :1076-1094
[29]   HPC2/ELAC2 polymorphisms and prostate cancer risk:: analysis by age of onset of disease [J].
Meitz, JC ;
Edwards, SM ;
Easton, DF ;
Murkin, A ;
Ardern-Jones, A ;
Jackson, RA ;
Williams, S ;
Dearnaley, DP ;
Stratton, MR ;
Houlston, RS ;
Eeles, RA .
BRITISH JOURNAL OF CANCER, 2002, 87 (08) :905-908
[30]   EVIDENCE OF AN X-LINKED OR RECESSIVE GENETIC COMPONENT TO PROSTATE-CANCER RISK [J].
MONROE, KR ;
YU, MC ;
KOLONEL, LN ;
COETZEE, GA ;
WILKENS, LR ;
ROSS, RK ;
HENDERSON, BE .
NATURE MEDICINE, 1995, 1 (08) :827-829