Young-onset type 2 diabetes families are the major contributors to genetic loci in the Diabetes UK Warren 2 genome scan and identify putative novel loci on chromosomes 8q21, 21q22, and 22q11

被引:40
作者
Frayling, TM
Wiltshire, S
Hitman, GA
Walker, M
Levy, JC
Sampson, M
Groves, CJ
Menzel, S
McCarthy, MI
Hattersley, AT
机构
[1] Univ Oxford, Oxford Ctr Diabet Endocrinol & Metab, Oxford 0X3 7LJ, England
[2] Norfolk & Norwich Univ Hosp, Elsie Bertram Diabet Ctr, Norwich, Norfolk, England
[3] Peninsula Med Sch, Dept Diabet & Vasc Med, Exeter, Devon, England
[4] Wellcome Trust Ctr Human Genet, Oxford, England
[5] St Bartholomews & Royal London, Dept Diabet & Metabol Med, London, England
[6] Univ Newcastle, Sch Med, Dept Med, Newcastle Upon Tyne, Tyne & Wear, England
关键词
D O I
10.2337/diabetes.52.7.1857
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
A young onset of type 2 diabetes is likely to result, in part, from greater genetic susceptibility. Young-onset families may therefore represent a group in which genes are more easily detectable by linkage. To test this hypothesis, we conducted age at diagnosis (AAD) stratified linkage analyses in the Diabetes UK Warren 2 sibpairs. In the previously published unstratified analysis, evidence for linkage (logarithm of odds [LOD] >1.18) was found at seven loci. The LOD scores at these seven loci were higher in the 245 families with AAD <55 years (L55) compared with the 328 families with AAD >55 years (G55). Five of these seven loci (1q24-25, 5q13, 8p21-22, 8q24.2, and 10q23.2) had LOD scores >1.18 in the L55 subset but only one (8p21-22) did in the G55 subset. Two additional loci (8q21.13 and 21q22.2) showed evidence for linkage in the L55 subset alone. Another locus (22q11) showed evidence for linkage in a subset of families with AAD <45 years. Using a locus-counting approach, the L55 subset had significantly more loci (Psimilar to0.01) than expected under the null hypothesis of no linkage across the LOD score range 0.59-3.0. In contrast, the G55 subset contained no more susceptibility loci than that expected by chance. In conclusion, young-onset families provide both disproportionate evidence for linkage to known loci and evidence for additional novel loci. Our data confirm our hypothesis that families segregating young-onset type 2 diabetes represent a more powerful resource for defining susceptibility genes by linkage.
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页码:1857 / 1863
页数:7
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共 23 条
  • [1] Genomewide search for type 2 diabetes susceptibility genes in four American populations
    Ehm, MG
    Karnoub, MC
    Sakul, H
    Gottschalk, K
    Holt, DC
    Weber, JL
    Vaske, D
    Briley, D
    Briley, L
    McMillen, P
    Nguyen, Q
    Reisman, M
    Lai, EH
    Joslyn, G
    Shepherd, NS
    Bell, C
    Wagner, MJ
    Burns, DK
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 66 (06) : 1871 - 1881
  • [2] A genome-wide search for type 2 diabetes susceptibility genes in Utah Caucasians
    Elbein, SC
    Hoffman, MD
    Teng, K
    Leppert, MF
    Hasstedt, SJ
    [J]. DIABETES, 1999, 48 (05) : 1175 - 1182
  • [3] A genome-wide scan in families with maturity-onset diabetes of the young - Evidence for further genetic heterogeneity
    Frayling, TM
    Lindgren, CM
    Chevre, JC
    Menzel, S
    Wishart, M
    Benmezroua, Y
    Brown, A
    Evans, JC
    Rao, PS
    Dina, C
    Lecoeur, C
    Kanninen, T
    Almgren, P
    Bulman, MP
    Wang, YX
    Mills, J
    Wright-Pascoe, R
    Mahtani, MM
    Prisco, F
    Costa, A
    Cognet, I
    Hansen, T
    Pedersen, O
    Ellard, S
    Tuomi, T
    Groop, LC
    Froguel, P
    Hattersley, AT
    Vaxillaire, M
    [J]. DIABETES, 2003, 52 (03) : 872 - 881
  • [4] Parent-offspring trios - A resource to facilitate the identification of type 2 diabetes genes
    Frayling, TM
    Walker, M
    McCarthy, MI
    Evans, JC
    Allen, LI
    Lynn, S
    Ayres, S
    Millauer, B
    Turner, C
    Turner, RC
    Sampson, MJ
    Hitman, GA
    Ellard, S
    Hattersley, AT
    [J]. DIABETES, 1999, 48 (12) : 2475 - 2479
  • [5] The Finland-United States Investigation of Non-Insulin-Dependent Diabetes Mellitus Genetics (FUSION) study.: I.: An autosomal genome scan for genes that predispose to type 2 diabetes
    Ghosh, S
    Watanabe, RM
    Valle, TT
    Hauser, ER
    Magnuson, VL
    Langefeld, CD
    Ally, DS
    Mohlke, KL
    Silander, K
    Kohtamäki, K
    Chines, P
    Balow, J
    Birznieks, G
    Chang, J
    Eldridge, W
    Erdos, MR
    Karanjawala, ZE
    Knapp, JI
    Kudelko, K
    Martin, C
    Morales-Mena, A
    Musick, A
    Musick, T
    Pfahl, C
    Porter, R
    Rayman, JB
    Rha, D
    Segal, L
    Shapiro, S
    Sharaf, R
    Shurtleff, B
    So, A
    Tannenbaum, J
    Te, C
    Tovar, J
    Unni, A
    Welch, C
    Whiten, R
    Witt, A
    Blaschak-Harvan, J
    Douglas, JA
    Duren, WL
    Epstein, MP
    Fingerlin, TE
    Kaleta, HS
    Lange, EM
    Li, C
    McEachin, RC
    Stringham, HM
    Trager, E
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 67 (05) : 1174 - 1185
  • [6] Type 2 diabetes: Evidence for linkage on chromosome 20 in 716 Finnish affected sib pairs
    Ghosh, S
    Watanabe, RM
    Hauser, ER
    Valle, T
    Magnuson, VL
    Erdos, MR
    Langefeld, CD
    Balow, J
    Ally, DS
    Kohtamaki, K
    Chines, P
    Birznieks, G
    Kaleta, HS
    Musick, A
    Te, C
    Tannenbaum, J
    Eldridge, W
    Shapiro, S
    Martin, C
    Witt, A
    So, A
    Chang, J
    Shurtleff, B
    Porter, R
    Kudelko, K
    Unni, A
    Segal, L
    Sharaf, R
    Blaschak-Harvan, J
    Eriksson, J
    Tenkula, T
    Vidgren, G
    Ehnholm, C
    Tuomilehto-Wolf, E
    Hagopian, W
    Buchanan, TA
    Tuomilehto, J
    Bergman, RN
    Collins, FS
    Boehnke, M
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (05) : 2198 - 2203
  • [7] Large-scale association studies of variants in genes encoding the pancreatic β-cell KATP channel subunits Kir6.2 (KCNJ11) and SUR1 (ABCC8) confirm that the KCNJ11 E23K variant is associated with type 2 diabetes
    Gloyn, AL
    Weedon, MN
    Owen, KR
    Turner, MJ
    Knight, BA
    Hitman, G
    Walker, M
    Levy, JC
    Sampson, M
    Halford, S
    McCarthy, MI
    Hattersley, AT
    Frayling, TM
    [J]. DIABETES, 2003, 52 (02) : 568 - 572
  • [8] Allegro, a new computer program for multipoint linkage analysis
    Gudbjartsson, DF
    Jonasson, K
    Frigge, ML
    Kong, A
    [J]. NATURE GENETICS, 2000, 25 (01) : 12 - 13
  • [9] A genome-wide search for human non-insulin dependent (type 2) diabetes genes reveals a major susceptibility locus on chromosome 2
    Hanis, CL
    Boerwinkle, E
    Chakraborty, R
    Ellsworth, DL
    Concannon, P
    Stirling, B
    Morrison, VA
    Wapelhorst, B
    Spielman, RS
    GogolinEwens, KJ
    Shephard, JM
    Williams, SR
    Risch, N
    Hinds, D
    Iwasaki, N
    Ogata, M
    Omori, Y
    Petzold, C
    Rietzsch, H
    Schroder, HE
    Schulze, J
    Cox, NJ
    Menzel, S
    Boriraj, VV
    Chen, X
    Lim, LR
    Lindner, T
    Mereu, LE
    Wang, YQ
    Xiang, K
    Yamagata, K
    Yang, Y
    Bell, GI
    [J]. NATURE GENETICS, 1996, 13 (02) : 161 - 166
  • [10] An autosomal genomic scan for loci linked to type II diabetes mellitus and body-mass index in Pima Indians
    Hanson, RL
    Ehm, MG
    Pettitt, DJ
    Prochazka, M
    Thompson, DB
    Timberlake, D
    Foroud, T
    Kobes, S
    Baler, L
    Burns, DK
    Almasy, L
    Blangero, J
    Garvey, WT
    Bennett, PH
    Knowler, WC
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 1998, 63 (04) : 1130 - 1138