NOD x 129.H2g7 Backcross Delineates 129S1/SvImJ-Derived Genomic Regions Modulating Type 1 Diabetes Development in Mice

被引:14
作者
Leiter, Edward H. [1 ]
Reifsnyder, Peter C. [1 ]
Wallace, Racheal [1 ]
Li, Renhua [1 ]
King, Benjamin [1 ]
Churchill, Gary C. [1 ]
机构
[1] Jackson Lab, Bar Harbor, ME 04609 USA
关键词
EMBRYONIC-STEM-CELLS; GERM-LINE TRANSMISSION; SUBCONGENIC ANALYSIS; SUSCEPTIBILITY; LOCUS; MOUSE; RESISTANCE; COMPLEX; CROSSES; STRAIN;
D O I
10.2337/db09-0120
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
OBJECTIVE-Introduction of genes targeted in 129/Sv embryonic stem (ES) cells into NOD mice brings about linked genes that may modulate type 1 diabetes. Our objective was to identify 12951/SvJ non-MHC regions contributing type 1 diabetes resistance or susceptibility in backcross to NOD/LtJ. RESEARCH DESIGN AND METHODS-After congenic transfer of the NOD H2(g7) haplotype onto 12951/Sv, 310 females were produced by NOD x (NOD x 129.H2(g7))F1 backcross (N2). A genome scan for quantitative trait locus (QTL) affecting clinical diabetes, age of diabetes onset, and insulitis severity was performed using subphenotype characteristics to improve power and resolution for detection of diabetes susceptibility loci. RESULTS-Thirty-six of 310 (11.6%) N2 females developed type 1 diabetes between 14 and 40 weeks. Significant evidence of linkage for only a single previously reported Idd complex locus (Idd10/17/18, chromosome [Chr] 3) was indicated for clinical diabetes. The quantitative traits of insulitis either alone or combined with age at type 1 diabetes onset were significantly linked to known Idd regions on Chr 1 (Idd5 region), Chr 4 (Idd9 region), Chr 8 (Idd22), Chr 11 (Idd4.3), and proximal Chr 17 (Idd16 region). Significant 129S1/Sv resistance contributions were identified on Chr 1, 15 (two loci), and 19, with suggestive evidence for additional novel 129/Sv resistance QTL on Chr 5 and 17 and susceptibility on Chr 2. CONCLUSIONS-The 12951/SvJ genome harbors collections of both known and potentially novel non-MHC Idd loci. Investigators targeting 129/Sv genes mapping within chromosomal regions reported herein or elsewhere in the genome need to exclude potential contributions from linked Idd loci by generating a NOD.129 control strain expressing the nontargeted allele. Diabetes 58:1700-1703, 2009
引用
收藏
页码:1700 / 1703
页数:4
相关论文
共 17 条
  • [1] Improved experimental procedures for achieving efficient germ line transmission of nonobese diabetic (NOD)-derived embryonic stem cells
    Arai, S
    Minjares, C
    Nagafuchi, S
    Miyazaki, T
    [J]. EXPERIMENTAL DIABESITY RESEARCH, 2004, 5 (03) : 219 - 226
  • [2] An interval tightly linked to but distinct from the H2 complex controls both overt diabetes (Idd16) and chronic experimental autoimmune thyroiditis (Ceat1) in nonobese diabetic mice
    Boulard, O
    Damotte, D
    Deruytter, N
    Fluteau, G
    Carnaud, C
    Garchon, HJ
    [J]. DIABETES, 2002, 51 (07) : 2141 - 2147
  • [3] R/qtl: QTL mapping in experimental crosses
    Broman, KW
    Wu, H
    Sen, S
    Churchill, GA
    [J]. BIOINFORMATICS, 2003, 19 (07) : 889 - 890
  • [4] The derivation of highly germline-competent embryonic stem cells containing NOD-derived genome
    Brook, FA
    Evans, EP
    Lord, CJ
    Lyons, PA
    Rainbow, DB
    Howlett, SK
    Wicker, LS
    Todd, JA
    Gardner, RL
    [J]. DIABETES, 2003, 52 (01) : 205 - 208
  • [5] Agouti NOD:: identification of a CBA-derived Idd locus on Chromosome 7 and its use for chimera production with NOD embryonic stem cells
    Chen, J
    Reifsnyder, PC
    Scheuplein, F
    Schott, WH
    Mileikovsky, M
    Soodeen-Karamath, S
    Nagy, A
    Dosch, MH
    Ellis, J
    Koch-Nolte, F
    Leiter, EH
    [J]. MAMMALIAN GENOME, 2005, 16 (10) : 775 - 783
  • [6] Interactions between Idd5.1/Ctla4 and other type 1 diabetes genes
    Hunter, Kara
    Rainbow, Dan
    Plagnol, Vincent
    Todd, John A.
    Peterson, Laurence B.
    Wicker, Linda S.
    [J]. JOURNAL OF IMMUNOLOGY, 2007, 179 (12) : 8341 - 8349
  • [7] Protection of nonobese diabetic mice from diabetes by gene(s) closely linked to IFN-γ receptor loci
    Kanagawa, O
    Xu, G
    Tevaarwerk, A
    Vaupel, BA
    [J]. JOURNAL OF IMMUNOLOGY, 2000, 164 (07) : 3919 - 3923
  • [8] Nonobese diabetic mouse congenic analysis reveals chromosome 11 locus contributing to diabetes susceptibility, macrophage STAT5 dysfunction, and granulocyte-macrophage colony-stimulating factor overproduction
    Litherland, SA
    Grebe, KM
    Belkin, NS
    Paek, E
    Elf, J
    Atkinson, M
    Morel, L
    Clare-Salzler, MJ
    McDuffie, M
    [J]. JOURNAL OF IMMUNOLOGY, 2005, 175 (07) : 4561 - 4565
  • [9] Genetic analysis of resistance to type-1 diabetes in ALR/Lt mice, a NOD-related strain with defenses against autoimmune-mediated diabetogenic stress
    Mathews, CE
    Graser, RT
    Bagley, RJ
    Caldwell, JW
    Li, RH
    Churchill, GA
    Serreze, DV
    Leiter, EH
    [J]. IMMUNOGENETICS, 2003, 55 (07) : 491 - 496
  • [10] CROSSES OF NOD MICE WITH THE RELATED NON STRAIN - A POLYGENIC MODEL FOR IDDM
    MCALEER, MA
    REIFSNYDER, P
    PALMER, SM
    PROCHAZKA, M
    LOVE, JM
    COPEMAN, JB
    POWELL, EE
    RODRIGUES, NR
    PRINS, JB
    SERREZE, DV
    DELARATO, NH
    WICKER, LS
    PETERSON, LB
    SCHORK, NJ
    TODD, JA
    LEITER, EH
    [J]. DIABETES, 1995, 44 (10) : 1186 - 1195