Abstract
Defects in immune regulation have been implicated in the pathogenesis of diabetes in mouse and in man. In vitro assays using autologous regulatory (Treg) and responder effector (Teff) T cells have shown that suppression is impaired in diabetic subjects. In this study, we addressed whether the source of this defect is intrinsic to the Treg or Teff compartment of diabetic subjects. We first established that in type 1 diabetes (T1D) individuals, similar levels of impaired suppression were seen, irrespective of whether natural (nTreg) or adaptive Treg (aTreg) were present. Then using aTreg, we examined the ability of T1D aTreg to suppress Teff of healthy controls, as compared with the ability of control aTreg to suppress Teff of diabetic subjects. Taking this approach, we found that the aTregs from T1D subjects function normally in the presence of control Teff, and that the T1D Teff were resistant to suppression in the presence of control aTreg. This escape from regulation was seen with nTreg as well and was not transferred to control Teff coincubated with T1D Teff. Thus, the "defective regulation" in T1D is predominantly due to the resistance of responding T cells to Treg and is a characteristic intrinsic to the T1D Teff. This has implications with respect to pathogenic mechanisms, which underlie the development of disease and the target of therapies for T1D.
MeSH Terms
Cell Proliferation
Coculture Techniques
Diabetes Mellitus, Type 1/immunology
Flow Cytometry
Humans
Lymphocyte Activation/immunology
T-Lymphocyte Subsets/immunology
T-Lymphocytes, Regulatory/immunology
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Schneider Anya
Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA.
Rieck Mary
Sanda Srinath
Pihoker Catherine
Greenbaum Carla
Buckner Jane H
References (24)
24 references, click to expand
-
X-linked neonatal diabetes mellitus, enteropathy and endocrinopathy syndrome is the human equivalent of mouse scurfy.
Nat Genet. 2001 Jan;27(1):18-20
PMID: 11137992
-
Reduced CD4+,CD25- T cell sensitivity to the suppressive function of CD4+,CD25high,CD127 -/low regulatory T cells in patients with active systemic lupus erythematosus.
Arthritis Rheum. 2008 Jul;58(7):2120-30
PMID: 18576316
-
Dynamics of pathogenic and suppressor T cells in autoimmune diabetes development.
J Immunol. 2003 Oct 15;171(8):4040-7
PMID: 14530324
-
Induction of FoxP3 and acquisition of T regulatory activity by stimulated human CD4+CD25- T cells.
J Clin Invest. 2003 Nov;112(9):1437-43
PMID: 14597769
-
Cutting edge: IL-2 is critically required for the in vitro activation of CD4+CD25+ T cell suppressor function.
J Immunol. 2004 Jun 1;172(11):6519-23
PMID: 15153463
-
In vitro-expanded antigen-specific regulatory T cells suppress autoimmune diabetes.
J Exp Med. 2004 Jun 7;199(11):1455-65
PMID: 15184499
-
Lymphocyte subset abnormalities, autoantibodies and their relationship with HLA DR types in children with type 1 (insulin-dependent) diabetes and their first degree relatives.
Diabetologia. 1994 Feb;37(2):155-65
PMID: 8163049
-
Defective suppressor function in CD4(+)CD25(+) T-cells from patients with type 1 diabetes.
Diabetes. 2005 Jan;54(1):92-9
PMID: 15616015
-
CD4+CD25high regulatory T cells in human autoimmune diabetes.
J Autoimmun. 2005 Feb;24(1):55-62
PMID: 15725577
-
Functional defects and the influence of age on the frequency of CD4+ CD25+ T-cells in type 1 diabetes.
Diabetes. 2005 May;54(5):1407-14
PMID: 15855327
-
Autoimmune diabetes onset results from qualitative rather than quantitative age-dependent changes in pathogenic T-cells.
Diabetes. 2005 May;54(5):1415-22
PMID: 15855328
-
Coexpression of CD25 and CD27 identifies FoxP3+ regulatory T cells in inflamed synovia.
J Exp Med. 2005 Jun 6;201(11):1793-803
PMID: 15939793
-
Cutting edge: IL-12 induces CD4+CD25- T cell activation in the presence of T regulatory cells.
J Immunol. 2005 Jul 15;175(2):641-5
PMID: 16002658
-
TNF downmodulates the function of human CD4+CD25hi T-regulatory cells.
Blood. 2006 Jul 1;108(1):253-61
PMID: 16537805
-
A mini meta-analysis of studies on CD4+CD25+ T cells in human type 1 diabetes: report of the Immunology of Diabetes Society T Cell Workshop.
Ann N Y Acad Sci. 2006 Oct;1079:9-18
PMID: 17130526
-
IL-21 counteracts the regulatory T cell-mediated suppression of human CD4+ T lymphocytes.
J Immunol. 2007 Jan 15;178(2):732-9
PMID: 17202333
-
No alterations in the frequency of FOXP3+ regulatory T-cells in type 1 diabetes.
Diabetes. 2007 Mar;56(3):604-12
PMID: 17327427
-
Myelin-specific regulatory T cells accumulate in the CNS but fail to control autoimmune inflammation.
Nat Med. 2007 Apr;13(4):423-31
PMID: 17384649
-
Differential glycosylation of TH1, TH2 and TH-17 effector cells selectively regulates susceptibility to cell death.
Nat Immunol. 2007 Aug;8(8):825-34
PMID: 17589510
-
Allograft rejection mediated by memory T cells is resistant to regulation.
Proc Natl Acad Sci U S A. 2007 Dec 11;104(50):19954-9
PMID: 18042727
-
Release from regulatory T cell-mediated suppression during the onset of tissue-specific autoimmunity is associated with elevated IL-21.
J Immunol. 2008 Apr 15;180(8):5393-401
PMID: 18390721
-
Combination of rapamycin and IL-2 increases de novo induction of human CD4(+)CD25(+)FOXP3(+) T cells.
J Autoimmun. 2008 Jun;30(4):293-302
PMID: 18313267
-
Central role of defective interleukin-2 production in the triggering of islet autoimmune destruction.
Immunity. 2008 May;28(5):687-97
PMID: 18468463
-
Disruption of a new forkhead/winged-helix protein, scurfin, results in the fatal lymphoproliferative disorder of the scurfy mouse.
Nat Genet. 2001 Jan;27(1):68-73
PMID: 11138001