Diabetes protection and restoration of thymocyte apoptosis in NOD Idd6 congenic strains

被引:23
作者
Bergman, ML
Duarte, N
Campino, S
Lundholm, M
Motta, V
Lejon, K
Penha-Gonçalves, C
Holmberg, D [1 ]
机构
[1] Umea Univ, Umea Ctr Mol Med, S-90187 Umea, Sweden
[2] Inst Gulbenkian Ciencias, Oeiras, Portugal
关键词
D O I
10.2337/diabetes.52.7.1677
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Type 1 diabetes in the nonobese diabetic (NOD) mouse is a multifactorial and polygenic disease. The NOD-derived genetic factors that contribute to type I diabetes are named Idd (insulin-dependent diabetes) loci. To date, the biological functions of the majority of the Idd loci remain unknown. We have previously reported that resistance of NOD immature thymocytes to depletion by dexamethazone (Dxm) maps to the Idd6 locus. Herein, we refine this phenotype using a time-course experiment of apoptosis induction upon Dxm treatment. We confirm that the Idd6 region controls apoptosis resistance in immature thymocytes. Moreover, we establish reciprocal Idd6 congenic NOD and B6 strains to formally demonstrate that the Idd6 congenic region mediates restoration of the apoptosis resistance phenotype. Analysis of the Idd6 congenic strains indicates that a 3-cM chromosomal region located within the distal part of the Idd6 region controls apoptosis resistance in NOD immature thymocytes. Together, these data support the hypothesis that resistance to Dxm-induced apoptosis in NOD immature thymocytes is controlled by a genetic factor within the region that also contributes to type 1 diabetes pathogenesis. We propose that the diabetogenic effect of the Idd6 locus is exerted at the level of the thymic selection process.
引用
收藏
页码:1677 / 1682
页数:6
相关论文
共 51 条
[1]   Do glucocorticoids participate in thymocyte development? [J].
Ashwell, JD ;
Vacchio, MS ;
Galon, J .
IMMUNOLOGY TODAY, 2000, 21 (12) :644-645
[2]   Sequence analysis of Tnf as a candidate for Idd16 [J].
Babaya, N ;
Ikegami, H ;
Fujisawa, T ;
Ueda, H ;
Nojima, K ;
Itoi-Babaya, M ;
Yamada, K ;
Kawaguchi, Y ;
Yamato, E ;
Makino, S ;
Ogihara, T .
AUTOIMMUNITY, 2002, 35 (01) :63-66
[3]   Low rate of proliferation in immature thymocytes of the non-obese diabetic mouse maps to the ldd6 diabetes susceptibility region [J].
Bergman, ML ;
Penha-Gonçalves, C ;
Lejon, K ;
Holmberg, D .
DIABETOLOGIA, 2001, 44 (08) :1054-1061
[4]   CTLA-4-/- mice display T cell-apoptosis resistance resembling that ascribed to autoimmune-prone non-obese diabetic (NOD) mice [J].
Bergman, ML ;
Cilio, CM ;
Penha-Gonçalves, C ;
Lamhamedi-Cherradi, SE ;
Löfgren, A ;
Colucci, F ;
Lejon, K ;
Garchon, HJ ;
Holmberg, D .
JOURNAL OF AUTOIMMUNITY, 2001, 16 (02) :105-113
[5]   ORGAN-SPECIFIC AUTOIMMUNITY - A 1986 OVERVIEW [J].
BOTTAZZO, GF ;
TODD, I ;
MIRAKIAN, R ;
BELFIORE, A ;
PUJOLBORRELL, R .
IMMUNOLOGICAL REVIEWS, 1986, 94 :137-169
[6]  
Cameron MJ, 1997, J IMMUNOL, V159, P4686
[7]   Protection against diabetes and improved NW/NKT cell performance in NOD.NK1.1 mice congenic at the NK complex [J].
Carnaud, C ;
Gombert, JM ;
Donnars, O ;
Garchon, HJ ;
Herbelin, A .
JOURNAL OF IMMUNOLOGY, 2001, 166 (04) :2404-2411
[8]   TYPE-I DIABETES - A CHRONIC AUTOIMMUNE-DISEASE OF HUMAN, MOUSE, AND RAT [J].
CASTANO, L ;
EISENBARTH, GS .
ANNUAL REVIEW OF IMMUNOLOGY, 1990, 8 :647-679
[9]   THYMOCYTE APOPTOSIS INDUCED BY P53-DEPENDENT AND INDEPENDENT PATHWAYS [J].
CLARKE, AR ;
PURDIE, CA ;
HARRISON, DJ ;
MORRIS, RG ;
BIRD, CC ;
HOOPER, ML ;
WYLLIE, AH .
NATURE, 1993, 362 (6423) :849-852
[10]   LPR AND GLD - SINGLE GENE MODELS OF SYSTEMIC AUTOIMMUNITY AND LYMPHOPROLIFERATIVE DISEASE [J].
COHEN, PL ;
EISENBERG, RA .
ANNUAL REVIEW OF IMMUNOLOGY, 1991, 9 :243-269