Reproducible association with type 1 diabetes in the extended class I region of the major histocompatibility complex

被引:38
作者
Viken, M. K. [1 ,2 ]
Blomhoff, A. [3 ]
Olsson, M. [4 ,5 ]
Akselsen, H. E. [6 ]
Pociot, F. [7 ]
Nerup, J. [7 ]
Kockum, I. [8 ]
Cambon-Thomsen, A. [9 ]
Thorsby, E. [1 ,2 ]
Undlien, D. E. [3 ,6 ]
Lie, B. A. [1 ]
机构
[1] Univ Hosp, Rikshosp, Inst Immunol, N-0027 Oslo, Norway
[2] Univ Oslo, Rikshosp, Inst Immunol, Fac Div, N-0027 Oslo, Norway
[3] Univ Oslo, Inst Med Genet, Fac Div, Ulleval Univ Hosp, Oslo 3, Norway
[4] Chalmers, Dept Math Stat, S-41296 Gothenburg, Sweden
[5] Univ Gothenburg, Dept Math Stat, Gothenburg, Sweden
[6] Ullevaal Univ Hosp, Dept Med Genet, Oslo, Norway
[7] Steno Diabet Ctr, DK-2820 Gentofte, Denmark
[8] Karolinska Inst, Dept Clin Neurosci, Neuroimmunol Unit, Stockholm, Sweden
[9] Univ Toulouse 3, INSERM, U 558, F-31062 Toulouse, France
关键词
association; type; 1; diabetes; HLA; xMHC; BTN; PRSS16; COPY-NUMBER VARIATION; SINGLE-NUCLEOTIDE POLYMORPHISMS; DISEASE-PREDISPOSING VARIANTS; LINKAGE-DISEQUILIBRIUM; HUMAN MHC; HUMAN GENOME; HLA COMPLEX; SERINE-PROTEASE; GENE-EXPRESSION; HAPLOTYPE;
D O I
10.1038/gene.2009.13
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The high-risk human leukocyte antigen (HLA)-DRB1, DQA1 and DQB1 alleles cannot explain the entire type 1 diabetes (T1D) association observed within the extended major histocompatibility complex. We have earlier identified an association with D6S2223, located 2.3Mb telomeric of HLA-A, on the DRB1*03-DQA1*0501-DQB1*0201 haplotype, and this study aimed to fine-map the associated region also on the DRB1*0401-DQA1*03-DQB1*0302 haplotype, characterized by less extensive linkage disequilibrium. To exclude associations secondary to DRB1-DQA1-DQB1 haplotypes, 205 families with at least one parent homozygous for these loci, were genotyped for 137 polymorphisms. We found novel associations on the DRB1*0401-DQA1*03-DQB1*0302 haplotypic background with eight single nucleotide polymorphisms (SNPs) located within or near the PRSS16 gene. In addition, association at the butyrophilin (BTN)-gene cluster, particularly the BTN3A2 gene, was observed by multilocus analyses. We replicated the associations with SNPs in the PRSS16 region and, albeit weaker, to the BTN3A2 region, in an independent material of 725 families obtained from the Type 1 Diabetes Genetics Consortium. It is important to note that these associations were independent of the HLA-DRB1-DQA1-DQB1 genes, as well as of associations observed at HLA-A, -B and -C. Taken together, our results identify PRSS16 and BTN3A2, two genes thought to play important roles in regulating the immune response, as potentially novel susceptibility genes for T1D. Genes and Immunity (2009) 10, 323-333; doi:10.1038/gene.2009.13; published online 19 March 2009
引用
收藏
页码:323 / 333
页数:11
相关论文
共 50 条
[1]   Extent and distribution of linkage disequilibrium in three genomic regions [J].
Abecasis, GR ;
Noguchi, E ;
Heinzmann, A ;
Traherne, JA ;
Bhattacharyya, S ;
Leaves, NI ;
Anderson, GG ;
Zhang, YM ;
Lench, NJ ;
Carey, A ;
Cardon, LR ;
Moffatt, MF ;
Cookson, WOC .
AMERICAN JOURNAL OF HUMAN GENETICS, 2001, 68 (01) :191-197
[2]   Haplotype-specific linkage disequilibrium patterns define the genetic topography of the human MHC [J].
Ahmad, T ;
Neville, M ;
Marshall, SE ;
Armuzzi, A ;
Mulcahy-Hawes, K ;
Crawshaw, J ;
Sato, H ;
Ling, KL ;
Barnardo, M ;
Goldthorpe, S ;
Walton, R ;
Bunce, M ;
Jewell, DP ;
Welsh, KI .
HUMAN MOLECULAR GENETICS, 2003, 12 (06) :647-656
[3]   Copy number polymorphism in Fcgr3 predisposes to glomerulonephritis in rats and humans [J].
Aitman, TJ ;
Dong, R ;
Vyse, TJ ;
Norsworthy, PJ ;
Johnson, MD ;
Smith, J ;
Mangion, J ;
Roberton-Lowe, C ;
Marshall, AJ ;
Petretto, E ;
Hodges, MD ;
Bhangal, G ;
Patel, SG ;
Sheehan-Rooney, K ;
Duda, M ;
Cook, PR ;
Evans, DJ ;
Domin, J ;
Flint, J ;
Boyle, JJ ;
Pusey, CD ;
Cook, HT .
NATURE, 2006, 439 (7078) :851-855
[4]   Extreme genetic risk for type 1A diabetes [J].
Aly, Theresa A. ;
Ide, Akane ;
Jahromi, Mohamed M. ;
Barker, Jennifer M. ;
Fernando, Maria S. ;
Babu, Sunanda R. ;
Yu, Liping ;
Miao, Dongmei ;
Erlich, Henry A. ;
Fain, Pamela R. ;
Barriga, Katherine J. ;
Norris, Jill M. ;
Rewers, Marian J. ;
Eisenbarth, George S. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (38) :14074-14079
[5]   Analysis of single nucleotide polymorphisms identifies major type 1A diabetes locus telomeric of the major histocompatibility complex [J].
Aly, TIteresa A. ;
Baschal, Erin E. ;
Jahromi, Mohamed M. ;
Fernando, Maria S. ;
Babu, Sunanda R. ;
Fingerlin, Tasha E. ;
Kretowski, Adam ;
Erlich, Henry A. ;
Fain, Pamela R. ;
Rewers, Marian J. ;
Eisenbarth, George S. .
DIABETES, 2008, 57 (03) :770-776
[6]   Two methods of whole-genome amplification enable accurate genotyping across a 2320-SNP linkage panel [J].
Barker, DL ;
Hansen, MST ;
Faruqi, AF ;
Giannola, D ;
Irsula, OR ;
Lasken, RS ;
Latterich, M ;
Makarov, V ;
Oliphant, A ;
Pinter, JH ;
Shen, R ;
Sleptsova, I ;
Ziehler, W ;
Lai, E .
GENOME RESEARCH, 2004, 14 (05) :901-907
[7]   Haploview: analysis and visualization of LD and haplotype maps [J].
Barrett, JC ;
Fry, B ;
Maller, J ;
Daly, MJ .
BIOINFORMATICS, 2005, 21 (02) :263-265
[8]   Maximum-likelihood estimation of haplotype frequencies in nuclear families [J].
Becker, T ;
Knapp, M .
GENETIC EPIDEMIOLOGY, 2004, 27 (01) :21-32
[9]   Linkage disequilibrium and haplotype blocks in the MHC vary in an HLA haplotype specific manner assessed mainly by DRB1*03 and DRB1*04 haplotypes [J].
Blomhoff, A ;
Olsson, M ;
Johansson, S ;
Akselsen, HE ;
Pociot, F ;
Nerup, J ;
Kockum, I ;
Cambon-Thomsen, A ;
Thorsby, E ;
Undlien, DE ;
Lie, BA .
GENES AND IMMUNITY, 2006, 7 (02) :130-140
[10]   Cloning of a novel MHC-encoded serine peptidase highly expressed by cortical epithelial cells of the thymus [J].
Bowlus, CL ;
Ahn, J ;
Chu, T ;
Gruen, JR .
CELLULAR IMMUNOLOGY, 1999, 196 (02) :80-86