Family-based linkage disequilibrium mapping using SNP marker haplotypes: application to a potential locus for schizophrenia at chromosome 22q11

被引:102
作者
Li, T
Ball, D
Zhao, J
Murray, RM
Liu, X
Sham, PC
Collier, DA
机构
[1] Inst Psychiat, Dept Psychol Med, London SE5 8AF, England
[2] W China Univ Med Sci, Dept Psychiat, Sichuan 610041, Peoples R China
[3] Inst Psychiat, Ctr Social Genet & Dev Psychiat, London SE5 8AF, England
基金
中国国家自然科学基金; 英国惠康基金;
关键词
psychosis; allelic association; ARVCF; COMT; TDT; family trios; LD maps;
D O I
10.1038/sj.mp.4000638
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
Family-based linkage disequilibrium mapping using SNP markers is expected to be a major route to the identification of susceptibility alleles for complex diseases. However there are a number of methodological issues yet to be resolved, including the handling of extended haplotype data and analysis of haplotype transmission in sib-pair or family trio samples. In the present study, we have analysed two dinucleotide repeat and six SNP markers at the COMT locus at chromosome 22q11, a region implicated in psychosis, for transmission distortion in 198 Chinese schizophrenic family trios. When individual markers were analysed using the TDT, two showed modest evidence of transmission distortion (186C/T, P = 0.04; Val168Met, P = 0.01). Using haplotypes of paired markers analysed by the program TRANSMIT, the most significant P value was 0.001, for the Met158Val and 900ins/delC polymorphisms in the COMT gene. The global P value for the haplotypes of ail six SNP markers tested was 0.004, largely a result of the excess transmission of two extended haplotypes which differed at the marker 408C/G. The exclusion of this marker from the analysis gave a global P value of 0.002 and produced a five marker haplotype system which was significant at P = 0.0006. This haplotype consisted of the alleles -287G:186C:Val158:900insC:ARVCF930C, which may represent a background haplotype for the transmission of a schizophrenia susceptibility allele at chromosome 22q11. Our results support the hypotheses that either COMT is itself a susceptibility gene, or more likely that this region of chromosome 22 contains a susceptibility gene that is in linkage disequilibrium with COMT alleles.
引用
收藏
页码:77 / 84
页数:8
相关论文
共 56 条
[1]  
BARON M, 1984, AM J PSYCHIAT, V141, P29
[2]  
Carlson C, 1997, AM J HUM GENET, V60, P851
[3]   It's raining SNPs, hallelujah? [J].
Chakravarti, A .
NATURE GENETICS, 1998, 19 (03) :216-217
[4]   Fine genetic mapping using haplotype analysis and the missing data problem [J].
Chiano, MN ;
Clayton, DG .
ANNALS OF HUMAN GENETICS, 1998, 62 :55-60
[5]  
CLAYTON DG, 1998, TRANSMIT 2 3
[6]   Variations on a theme: Cataloging human DNA sequence variation [J].
Collins, FS ;
Guyer, MS ;
Chakravarti, A .
SCIENCE, 1997, 278 (5343) :1580-1581
[7]   LINKAGE DISEQUILIBRIUM MAPPING OF A TYPE-1 DIABETES SUSCEPTIBILITY GENE (IDDM7) TO CHROMOSOME 2Q31-Q33 [J].
COPEMAN, JB ;
CUCCA, F ;
HEARNE, CM ;
CORNALL, RJ ;
REED, PW ;
RONNINGEN, KS ;
UNDLIEN, DE ;
NISTICO, L ;
BUZZETTI, R ;
TOSI, R ;
POCIOT, F ;
NERUP, J ;
CORNELIS, F ;
BARNETT, AH ;
BAIN, SC ;
TODD, JA .
NATURE GENETICS, 1995, 9 (01) :80-85
[8]   No association between bipolar disorder and alleles at a functional polymorphism in the COMT gene - Biomed European Bipolar Collaborative Group [J].
Craddock, N ;
Spurlock, G ;
McGuffin, P ;
Owen, MJ ;
NostenBertrand, M ;
Bellivier, F ;
Meloni, R ;
Leboyer, M ;
Mallet, J ;
MynettJohnson, L ;
Murphy, V ;
McKeon, P ;
Kirov, G ;
Powell, J ;
Kunugi, H ;
Collier, D ;
Larosa, M ;
Nacmias, B ;
Sorbi, S ;
Schwab, S ;
Ackenheil, M ;
Maier, W .
BRITISH JOURNAL OF PSYCHIATRY, 1997, 170 :526-528
[9]  
Daniels JK, 1996, AM J PSYCHIAT, V153, P268
[10]   POSSIBLE ROLE FOR COMT IN PSYCHOSIS ASSOCIATED WITH VELO-CARDIO-FACIAL SYNDROME [J].
DUNHAM, I ;
COLLINS, J ;
WADEY, R ;
SCAMBLER, P .
LANCET, 1992, 340 (8831) :1361-1362