Type 1 diabetes pathogenesis and the role of inhibitory receptors in islet tolerance

被引:15
作者
Martinov, Tijana [1 ]
Fife, Brian T. [1 ]
机构
[1] Univ Minnesota, Sch Med, Dept Med, Ctr Immunol, 2101 6th St SE,Wallin Med Biosci Bldg 3-146, Minneapolis, MN 55455 USA
关键词
type; 1; diabetes; tolerance; non-obese diabetic mice; cytotoxic T lymphocyte-associated protein-4; programmed death-1; lymphocyte activation gene-3; REGULATORY T-CELLS; ANTI-CD3; MONOCLONAL-ANTIBODY; MHC CLASS-II; ANTITHYMOCYTE GLOBULIN THERAPY; PROMISCUOUS GENE-EXPRESSION; GLUTAMIC-ACID DECARBOXYLASE; THYMIC EPITHELIAL-CELLS; PANCREATIC LYMPH-NODES; REACTIVE B-LYMPHOCYTES; PRESERVES C-PEPTIDE;
D O I
10.1111/nyas.14106
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Type 1 diabetes (T1D) affects over a million Americans, and disease incidence is on the rise. Despite decades of research, there is still no cure for this disease. Exciting beta cell replacement strategies are being developed, but in order for such approaches to work, targeted immunotherapies must be designed. To selectively halt the autoimmune response, researchers must first understand how this response is regulated and which tolerance checkpoints fail during T1D development. Herein, we discuss the current understanding of T1D pathogenesis in humans, genetic and environmental risk factors, presumed roles of CD4(+) and CD8(+) T cells as well as B cells, and implicated autoantigens. We also highlight studies in non-obese diabetic mice that have demonstrated the requirement for CD4(+) and CD8(+) T cells and B cells in driving T1D pathology. We present an overview of central and peripheral tolerance mechanisms and comment on existing controversies in the field regarding central tolerance. Finally, we discuss T cell- and B cell-intrinsic tolerance mechanisms, with an emphasis on the roles of inhibitory receptors in maintaining islet tolerance in humans and in diabetes-prone mice, and strategies employed to date to harness inhibitory receptor signaling to prevent or reverse T1D.
引用
收藏
页码:73 / 103
页数:31
相关论文
共 400 条
[1]   An autoimmune disease, APECED, caused by mutations in a novel gene featuring two PHD-type zinc-finger domains [J].
Aaltonen, J ;
Bjorses, P ;
Perheentupa, J ;
HorelliKuitunen, N ;
Palotie, A ;
Peltonen, L ;
Lee, YS ;
Francis, F ;
Hennig, S ;
Thiel, C ;
Lehrach, H ;
Yaspo, ML .
NATURE GENETICS, 1997, 17 (04) :399-403
[2]   Transient insulin autoantibody expression independent of development of diabetes: Comparison of NOD and NOR strains [J].
Abiru, N ;
Yu, LP ;
Miao, DM ;
Maniatis, AK ;
Liu, EW ;
Moriyama, H ;
Eisenbarth, GS .
JOURNAL OF AUTOIMMUNITY, 2001, 17 (01) :1-6
[3]   CD4+ T cell tolerance to parenchymal self-antigens requires presentation by bone marrow-derived antigen-presenting cells [J].
Adler, AJ ;
Marsh, DW ;
Yochum, GS ;
Guzzo, JL ;
Nigam, A ;
Nelson, WG ;
Pardoll, DM .
JOURNAL OF EXPERIMENTAL MEDICINE, 1998, 187 (10) :1555-1564
[4]   Induction of anergic or regulatory tumor-specific CD4+ T cells in the tumor-draining lymph node [J].
Alonso, Ruby ;
Flament, Heloise ;
Lemoine, Sebastien ;
Sedlik, Christine ;
Bottasso, Emanuel ;
Peguillet, Isabel ;
Premel, Virginie ;
Denizeau, Jordan ;
Salou, Marion ;
Darbois, Aurelie ;
Nunez, Nicolas Gonzalo ;
Salomon, Benoit ;
Gross, David ;
Piaggio, Eliane ;
Lantz, Olivier .
NATURE COMMUNICATIONS, 2018, 9
[5]   Efficacy and safety of low-dose otelixizumab anti-CD3 monoclonal antibody in preserving C-peptide secretion in adolescent type 1 diabetes: DEFEND-2, a randomized, placebo-controlled, double-blind, multi-centre study [J].
Ambery, P. ;
Donner, T. W. ;
Biswas, N. ;
Donaldson, J. ;
Parkin, J. ;
Dayan, C. M. .
DIABETIC MEDICINE, 2014, 31 (04) :399-402
[6]   CD154-dependent priming of diabetogenic CD4+ T cells dissociated from activation of antigen-presenting cells [J].
Amrani, A ;
Serra, P ;
Yamanouchi, J ;
Han, BY ;
Thiessen, S ;
Verdaguer, J ;
Santamaria, P .
IMMUNITY, 2002, 16 (05) :719-732
[7]   Prevalent CD8+ T cell response against one peptide/MHC complex in autoimmune diabetes [J].
Anderson, B ;
Park, BJ ;
Verdaguer, J ;
Amrani, A ;
Santamaria, P .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (16) :9311-9316
[8]   The NOD mouse: A model of immune dysregulation [J].
Anderson, MS ;
Bluestone, JA .
ANNUAL REVIEW OF IMMUNOLOGY, 2005, 23 :447-485
[9]   Projection of an immunological self shadow within the thymus by the aire protein [J].
Anderson, MS ;
Venanzi, ES ;
Klein, L ;
Chen, ZB ;
Berzins, SP ;
Turley, SJ ;
von Boehmer, H ;
Bronson, R ;
Dierich, A ;
Benoist, C ;
Mathis, D .
SCIENCE, 2002, 298 (5597) :1395-1401
[10]   LAG3 (CD223) as a cancer immunotherapy target [J].
Andrews, Lawrence P. ;
Marciscano, Ariel E. ;
Drake, Charles G. ;
Vignali, Dario A. A. .
IMMUNOLOGICAL REVIEWS, 2017, 276 (01) :80-96