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PMID: 22264504 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Demethylation analysis of the FOXP3 locus shows quantitative defects of regulatory T cells in IPEX-like syndrome.

Journal of autoimmunity ·Vol. 38 ·No. 1 ·2012-02-00 ·Pages 49-58

Barzaghi F, Passerini L, Gambineri E, Ciullini Mannurita S, Cornu T, Kang ES, Choe YH, Cancrini C, Corrente S, Ciccocioppo R, Cecconi M, Zuin G, Discepolo V, Sartirana C, Schmidtko J, Ikinciogullari A, Ambrosi A, Roncarolo MG, Olek S, Bacchetta R

Abstract

Immune dysregulation, Polyendocrinopathy, Enteropathy X-linked (IPEX) syndrome is a unique example of primary immunodeficiency characterized by autoimmune manifestations due to defective regulatory T (Treg) cells, in the presence of FOXP3 mutations. However, autoimmune symptoms phenotypically resembling IPEX often occur in the absence of detectable FOXP3 mutations. The cause of this "IPEX-like" syndrome presently remains unclear. To investigate whether a defect in Treg cells sustains the immunological dysregulation in IPEX-like patients, we measured the amount of peripheral Treg cells within the CD3(+) T cells by analysing demethylation of the Treg cell-Specific-Demethylated-Region (TSDR) in the FOXP3 locus and demethylation of the T cell-Specific-Demethylated-Region (TLSDR) in the CD3 locus, highly specific markers for stable Treg cells and overall T cells, respectively. TSDR demethylation analysis, alone or normalized for the total T cells, showed that the amount of peripheral Treg cells in a cohort of IPEX-like patients was significantly reduced, as compared to both healthy subjects and unrelated disease controls. This reduction could not be displayed by flow cytometric analysis, showing highly variable percentages of FOXP3(+) and CD25(+)FOXP3(+) T cells. These data provide evidence that a quantitative defect of Treg cells could be considered a common biological hallmark of IPEX-like syndrome. Since Treg cell suppressive function was not impaired, we propose that this reduction per se could sustain autoimmunity.

MeSH Terms
Adolescent Adult CD3 Complex/immunology,metabolism Child Child, Preschool Cohort Studies DNA Methylation Female Flow Cytometry Forkhead Transcription Factors/genetics Genetic Diseases, X-Linked/genetics,immunology Humans Immunologic Deficiency Syndromes/genetics,immunology Infant Male Polyendocrinopathies, Autoimmune/genetics,immunology Syndrome T-Lymphocytes, Regulatory/immunology,metabolism Young Adult
Chemicals
CD3 Complex FOXP3 protein, human Forkhead Transcription Factors
Authors & Affiliations
20 authors, click to expand affiliations / ORCID
Barzaghi F
San Raffaele Telethon Institute for Gene Therapy, Division of Regenerative Medicine, Stem Cells and Gene Therapy, San Raffaele Scientific Institute, Via Olgettina 58, 20131 Milan, Italy.
Passerini L
Gambineri E
Ciullini Mannurita S
Cornu T
Kang E S
Choe Y H
Cancrini C
Corrente S
Ciccocioppo R
Cecconi M
Zuin G
Discepolo V
Sartirana C
Schmidtko J
Ikinciogullari A
Ambrosi A
Roncarolo M G
Olek S
Bacchetta R
References (37)
37 references, click to expand
  1. A regulatory T cell-dependent novel function of CD25 (IL-2Ralpha) controlling memory CD8(+) T cell homeostasis.
    J Immunol. 2007 Feb 1;178(3):1251-5 PMID: 17237369
  2. IPEX, FOXP3 and regulatory T-cells: a model for autoimmunity.
    Immunol Res. 2007;38(1-3):112-21 PMID: 17917016
  3. Methylation matters: binding of Ets-1 to the demethylated Foxp3 gene contributes to the stabilization of Foxp3 expression in regulatory T cells.
    J Mol Med (Berl). 2010 Oct;88(10):1029-40 PMID: 20574810
  4. Severe FOXP3+ and naïve T lymphopenia in a non-IPEX form of autoimmune enteropathy combined with an immunodeficiency.
    Gastroenterology. 2007 May;132(5):1694-704 PMID: 17484867
  5. Clinical and molecular profile of a new series of patients with immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome: inconsistent correlation between forkhead box protein 3 expression and disease severity.
    J Allergy Clin Immunol. 2008 Dec;122(6):1105-1112.e1 PMID: 18951619
  6. Quantitative DNA methylation analysis based on four-dye trace data from direct sequencing of PCR amplificates.
    Bioinformatics. 2004 Nov 22;20(17):3005-12 PMID: 15247106
  7. Transient expression of FOXP3 in human activated nonregulatory CD4+ T cells.
    Eur J Immunol. 2007 Jan;37(1):129-38 PMID: 17154262
  8. FOXP3 promoter demethylation reveals the committed Treg population in humans.
    PLoS One. 2008 Feb 20;3(2):e1612 PMID: 18286169
  9. CTLA-4 control over Foxp3+ regulatory T cell function.
    Science. 2008 Oct 10;322(5899):271-5 PMID: 18845758
  10. Cutting edge: Decreased accumulation and regulatory function of CD4+ CD25(high) T cells in human STAT5b deficiency.
    J Immunol. 2006 Sep 1;177(5):2770-4 PMID: 16920911
  11. Characterization of immunodeficiency in a patient with growth hormone insensitivity secondary to a novel STAT5b gene mutation.
    Pediatrics. 2006 Nov;118(5):e1584-92 PMID: 17030597
  12. Low frequency of CD4+CD25+ Treg in SLE patients: a heritable trait associated with CTLA4 and TGFbeta gene variants.
    BMC Immunol. 2009 Jan 27;10:5 PMID: 19173720
  13. Induction of FOXP3 expression in naive human CD4+FOXP3 T cells by T-cell receptor stimulation is transforming growth factor-beta dependent but does not confer a regulatory phenotype.
    Blood. 2007 Oct 15;110(8):2983-90 PMID: 17644734
  14. Defective differentiation of regulatory FoxP3+ T cells by small-intestinal dendritic cells in patients with type 1 diabetes.
    Diabetes. 2011 Aug;60(8):2120-4 PMID: 21646390
  15. Epigenetic inheritance of DNA methylation limits activation-induced expression of FOXP3 in conventional human CD25-CD4+ T cells.
    Int Immunol. 2008 Aug;20(8):1041-55 PMID: 18567616
  16. Use of sirolimus in IPEX and IPEX-like children.
    J Clin Immunol. 2008 Sep;28(5):581-7 PMID: 18481161
  17. FOXP3 forkhead domain mutation and regulatory T cells in the IPEX syndrome.
    N Engl J Med. 2009 Oct 22;361(17):1710-3 PMID: 19846862
  18. Refined characterization and reference values of the pediatric T- and B-cell compartments.
    Clin Immunol. 2009 Oct;133(1):95-107 PMID: 19586803
  19. Quantitative DNA methylation analysis of FOXP3 as a new method for counting regulatory T cells in peripheral blood and solid tissue.
    Cancer Res. 2009 Jan 15;69(2):599-608 PMID: 19147574
  20. Epigenetic quantification of tumor-infiltrating T-lymphocytes.
    Epigenetics. 2011 Feb;6(2):236-46 PMID: 20962591
  21. Human immune disorder arising from mutation of the alpha chain of the interleukin-2 receptor.
    Proc Natl Acad Sci U S A. 1997 Apr 1;94(7):3168-71 PMID: 9096364
  22. Loss of tolerance and autoimmunity affecting multiple organs in STAT5A/5B-deficient mice.
    J Immunol. 2003 Nov 15;171(10):5042-50 PMID: 14607901
  23. Epigenetic mechanisms of regulation of Foxp3 expression.
    Blood. 2009 Oct 29;114(18):3727-35 PMID: 19641188
  24. Growth hormone insensitivity associated with a STAT5b mutation.
    N Engl J Med. 2003 Sep 18;349(12):1139-47 PMID: 13679528
  25. Clinical and molecular aspects of autoimmune enteropathy and immune dysregulation, polyendocrinopathy autoimmune enteropathy X-linked syndrome.
    Curr Opin Gastroenterol. 2008 Nov;24(6):742-8 PMID: 19122524
  26. Clinical and molecular features of the immunodysregulation, polyendocrinopathy, enteropathy, X linked (IPEX) syndrome.
    J Med Genet. 2002 Aug;39(8):537-45 PMID: 12161590
  27. Breakdown of T cell tolerance and autoimmunity in primary immunodeficiency--lessons learned from monogenic disorders in mice and men.
    Curr Opin Immunol. 2008 Dec;20(6):646-54 PMID: 18955138
  28. CD25 deficiency causes an immune dysregulation, polyendocrinopathy, enteropathy, X-linked-like syndrome, and defective IL-10 expression from CD4 lymphocytes.
    J Allergy Clin Immunol. 2007 Feb;119(2):482-7 PMID: 17196245
  29. Defective regulatory and effector T cell functions in patients with FOXP3 mutations.
    J Clin Invest. 2006 Jun;116(6):1713-22 PMID: 16741580
  30. Severe growth hormone insensitivity resulting from total absence of signal transducer and activator of transcription 5b.
    J Clin Endocrinol Metab. 2005 Jul;90(7):4260-6 PMID: 15827093
  31. Reduced expression of FOXP3 and regulatory T-cell function in severe forms of early-onset autoimmune enteropathy.
    Gastroenterology. 2010 Sep;139(3):770-8 PMID: 20537998
  32. Activation-induced FOXP3 in human T effector cells does not suppress proliferation or cytokine production.
    Int Immunol. 2007 Apr;19(4):345-54 PMID: 17329235
  33. FOXP3: of mice and men.
    Annu Rev Immunol. 2006;24:209-26 PMID: 16551248
  34. DNA demethylation in the human FOXP3 locus discriminates regulatory T cells from activated FOXP3(+) conventional T cells.
    Eur J Immunol. 2007 Sep;37(9):2378-89 PMID: 17694575
  35. Ulcerative colitis-like disease in mice with a disrupted interleukin-2 gene.
    Cell. 1993 Oct 22;75(2):253-61 PMID: 8402910
  36. Regulatory T cell lineage specification by the forkhead transcription factor foxp3.
    Immunity. 2005 Mar;22(3):329-41 PMID: 15780990
  37. Determination of lymphocyte division by flow cytometry.
    J Immunol Methods. 1994 May 2;171(1):131-7 PMID: 8176234
Article Info
Journal
Journal of autoimmunity
Abbr.
J Autoimmun
ISSN
1095-9157
Published
2012-02-00
Epub
2012-00-20
Pages
49-58
Language
English
Region
England
NLM ID
8812164
PMCID
PMC3314976
Subset
IM
Grants
Telethon · TGT11A04 · Italy
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