Home LiteratureArticle Details
PMID: 19934022 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

GATA-3 is required for early T lineage progenitor development.

The Journal of experimental medicine ·Vol. 206 ·No. 13 ·2009-12-21 ·Pages 2987-3000

Hosoya T, Kuroha T, Moriguchi T, Cummings D, Maillard I, Lim KC, Engel JD

Abstract

Most T lymphocytes appear to arise from very rare early T lineage progenitors (ETPs) in the thymus, but the transcriptional programs that specify ETP generation are not completely known. The transcription factor GATA-3 is required for the development of T lymphocytes at multiple late differentiation steps as well as for the development of thymic natural killer cells. However, a role for GATA-3 before the double-negative (DN) 3 stage of T cell development has to date been obscured both by the developmental heterogeneity of DN1 thymocytes and the paucity of ETPs. We provide multiple lines of in vivo evidence through the analysis of T cell development in Gata3 hypomorphic mutant embryos, in irradiated mice reconstituted with Gata3 mutant hematopoietic cells, and in mice conditionally ablated for the Gata3 gene to show that GATA-3 is required for ETP generation. We further show that Gata3 loss does not affect hematopoietic stem cells or multipotent hematopoietic progenitors. Finally, we demonstrate that Gata3 mutant lymphoid progenitors exhibit neither increased apoptosis nor diminished cell-cycle progression. Thus, GATA-3 is required for the cell-autonomous development of the earliest characterized thymic T cell progenitors.

MeSH Terms
Animals Cell Lineage GATA3 Transcription Factor/physiology Hematopoietic Stem Cells/physiology Liver/embryology Lymphopoiesis Mice Mice, Inbred C57BL T-Lymphocytes/physiology Thymus Gland/embryology
Chemicals
GATA3 Transcription Factor Gata3 protein, mouse
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Hosoya Tomonori
Department of Cell and Developmental Biology, Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, MI 48109, USA.
Kuroha Takashi
Moriguchi Takashi
Cummings Dustin
Maillard Ivan
Lim Kim-Chew
Engel James Douglas
References (65)
65 references, click to expand
  1. Nature or nurture? Steady-state lymphocyte formation in adults does not recapitulate ontogeny.
    Immunol Rev. 2002 Sep;187:116-25 PMID: 12366687
  2. A thymic pathway of mouse natural killer cell development characterized by expression of GATA-3 and CD127.
    Nat Immunol. 2006 Nov;7(11):1217-24 PMID: 17013389
  3. Induction of T cell development from hematopoietic progenitor cells by delta-like-1 in vitro.
    Immunity. 2002 Dec;17(6):749-56 PMID: 12479821
  4. Notch directly regulates Gata3 expression during T helper 2 cell differentiation.
    Immunity. 2007 Jul;27(1):100-10 PMID: 17658278
  5. The earliest subpopulation of mouse thymocytes contains potent T, significant macrophage, and natural killer cell but no B-lymphocyte potential.
    Blood. 2005 Mar 1;105(5):1930-6 PMID: 15522952
  6. Inducible gene targeting in mice.
    Science. 1995 Sep 8;269(5229):1427-9 PMID: 7660125
  7. Delayed, asynchronous, and reversible T-lineage specification induced by Notch/Delta signaling.
    Genes Dev. 2005 Apr 15;19(8):965-78 PMID: 15833919
  8. Clonal characterization of a bipotent T cell and NK cell progenitor in the mouse fetal thymus.
    J Immunol. 2000 Feb 15;164(4):1730-3 PMID: 10657617
  9. Tissue interaction in the development of thymus lymphocytes.
    J Exp Med. 1969 Feb 1;129(2):431-42 PMID: 5762051
  10. Targeted disruption of the GATA3 gene causes severe abnormalities in the nervous system and in fetal liver haematopoiesis.
    Nat Genet. 1995 Sep;11(1):40-4 PMID: 7550312
  11. Lineage specification and plasticity in CD19- early B cell precursors.
    J Exp Med. 2006 Mar 20;203(3):675-87 PMID: 16505143
  12. Expression of the transcription factor GATA-3 is required for the development of the earliest T cell progenitors and correlates with stages of cellular proliferation in the thymus.
    Eur J Immunol. 1999 Jun;29(6):1912-8 PMID: 10382753
  13. Involvement of transcription factors TCF-1 and GATA-3 in the initiation of the earliest step of T cell development in the thymus.
    J Exp Med. 1996 Sep 1;184(3):1137-47 PMID: 9064330
  14. Notch signaling controls the generation and differentiation of early T lineage progenitors.
    Nat Immunol. 2005 Jul;6(7):663-70 PMID: 15951813
  15. T-lymphoid, megakaryocyte, and granulocyte development are sensitive to decreases in CBFbeta dosage.
    Blood. 2007 Jan 1;109(1):11-21 PMID: 16940420
  16. Activation signal induces the expression of B cell-specific CD45R epitope (6B2) on murine T cells.
    Scand J Immunol. 1994 May;39(5):419-25 PMID: 7514808
  17. Canonical notch signaling is dispensable for the maintenance of adult hematopoietic stem cells.
    Cell Stem Cell. 2008 Apr 10;2(4):356-66 PMID: 18397755
  18. Transcription factor GATA-3 is required for development of the T-cell lineage.
    Nature. 1996 Dec 5;384(6608):474-8 PMID: 8945476
  19. At the crossroads: diverse roles of early thymocyte transcriptional regulators.
    Immunol Rev. 2006 Feb;209:191-211 PMID: 16448544
  20. Identification of pro-thymocytes in murine fetal blood: T lineage commitment can precede thymus colonization.
    EMBO J. 1994 Sep 15;13(18):4229-40 PMID: 7523109
  21. Identification of Flt3+ lympho-myeloid stem cells lacking erythro-megakaryocytic potential a revised road map for adult blood lineage commitment.
    Cell. 2005 Apr 22;121(2):295-306 PMID: 15851035
  22. Definition of regulatory network elements for T cell development by perturbation analysis with PU.1 and GATA-3.
    Dev Biol. 2002 Jun 1;246(1):103-21 PMID: 12027437
  23. Identification of a novel developmental stage marking lineage commitment of progenitor thymocytes.
    J Exp Med. 1997 Jul 21;186(2):173-82 PMID: 9221746
  24. Murine and human T-lymphocyte GATA-3 factors mediate transcription through a cis-regulatory element within the human T-cell receptor delta gene enhancer.
    Mol Cell Biol. 1991 May;11(5):2778-84 PMID: 2017177
  25. Gata3 loss leads to embryonic lethality due to noradrenaline deficiency of the sympathetic nervous system.
    Nat Genet. 2000 Jun;25(2):209-12 PMID: 10835639
  26. Notch-dependent T-lineage commitment occurs at extrathymic sites following bone marrow transplantation.
    Blood. 2006 May 1;107(9):3511-9 PMID: 16397133
  27. E2A proteins promote development of lymphoid-primed multipotent progenitors.
    Immunity. 2008 Aug 15;29(2):217-27 PMID: 18674933
  28. New insights into the proliferation and differentiation of early mouse thymocytes.
    Int Immunol. 2004 Aug;16(8):1069-80 PMID: 15197172
  29. A clonogenic common myeloid progenitor that gives rise to all myeloid lineages.
    Nature. 2000 Mar 9;404(6774):193-7 PMID: 10724173
  30. Mast cell lineage diversion of T lineage precursors by the essential T cell transcription factor GATA-3.
    Nat Immunol. 2007 Aug;8(8):845-55 PMID: 17603486
  31. Involvement of CCR9 at multiple stages of adult T lymphopoiesis.
    J Leukoc Biol. 2008 Jan;83(1):156-64 PMID: 17911179
  32. Notch signaling is necessary for GATA3 function in the initiation of T cell development.
    Eur J Immunol. 2008 Apr;38(4):977-85 PMID: 18383037
  33. Direct regulation of Gata3 expression determines the T helper differentiation potential of Notch.
    Immunity. 2007 Jul;27(1):89-99 PMID: 17658279
  34. GATA-3: an unexpected regulator of cell lineage determination in skin.
    Genes Dev. 2003 Sep 1;17(17):2108-22 PMID: 12923059
  35. GATA-3 maintains the differentiation of the luminal cell fate in the mammary gland.
    Cell. 2006 Dec 1;127(5):1041-55 PMID: 17129787
  36. Thymopoiesis independent of common lymphoid progenitors.
    Nat Immunol. 2003 Feb;4(2):168-74 PMID: 12514733
  37. Enforced expression of the GATA-3 transcription factor affects cell fate decisions in hematopoiesis.
    Exp Hematol. 2001 Aug;29(8):971-80 PMID: 11495703
  38. Negotiation of the T lineage fate decision by transcription-factor interplay and microenvironmental signals.
    Immunity. 2007 Jun;26(6):690-702 PMID: 17582342
  39. Heterogeneity among DN1 prothymocytes reveals multiple progenitors with different capacities to generate T cell and non-T cell lineages.
    Immunity. 2004 Jun;20(6):735-45 PMID: 15189738
  40. Direct evidence for the commitment of hematopoietic stem cells to T, B and myeloid lineages in murine fetal liver.
    Int Immunol. 1997 Jul;9(7):1011-9 PMID: 9237110
  41. Regulation of lymphoid versus myeloid fate 'choice' by the transcription factor Mef2c.
    Nat Immunol. 2009 Mar;10(3):289-96 PMID: 19169261
  42. Transcriptome and phenotypic analysis reveals Gata3-dependent signalling pathways in murine hair follicles.
    Development. 2007 Jan;134(2):261-72 PMID: 17151017
  43. Selective thymus settling regulated by cytokine and chemokine receptors.
    J Immunol. 2007 Feb 15;178(4):2008-17 PMID: 17277104
  44. Enforced expression of GATA-3 severely reduces human thymic cellularity.
    J Immunol. 2001 Oct 15;167(8):4468-75 PMID: 11591773
  45. The transcription factor GATA-3 is necessary and sufficient for Th2 cytokine gene expression in CD4 T cells.
    Cell. 1997 May 16;89(4):587-96 PMID: 9160750
  46. Identification of a bone marrow precursor of the earliest thymocytes in adult mouse.
    Proc Natl Acad Sci U S A. 2007 Apr 10;104(15):6311-6 PMID: 17404232
  47. The protean nature of cells in the B lymphocyte lineage.
    Immunity. 2007 Jun;26(6):703-14 PMID: 17582343
  48. Experimental studies on the development of the thymus.
    J Exp Med. 1967 Oct 1;126(4):715-26 PMID: 4861748
  49. Prethymic T-cell development defined by the expression of paired immunoglobulin-like receptors.
    EMBO J. 2005 Dec 7;24(23):4052-60 PMID: 16292344
  50. Developmental pathways that generate natural-killer-cell diversity in mice and humans.
    Nat Rev Immunol. 2007 Sep;7(9):703-14 PMID: 17717540
  51. Critical role of FLT3 ligand in IL-7 receptor independent T lymphopoiesis and regulation of lymphoid-primed multipotent progenitors.
    Blood. 2007 Oct 15;110(8):2955-64 PMID: 17540845
  52. Cell kinetics in the fetal mouse thymus: precursor cell input, proliferation, and emigration.
    J Immunol. 1987 Feb 15;138(4):1026-30 PMID: 2879866
  53. DEVELOPMENT OF THE THYROID AND THYMUS GLANDS AND THE TONGUE.
    Science. 1884 Jun 13;3(71):725-6 PMID: 17806512
  54. Thymocytopoiesis is maintained by blood-borne precursors throughout postnatal life. A study in parabiotic mice.
    J Immunol. 1992 Mar 15;148(6):1604-12 PMID: 1347301
  55. GATA-3 is involved in the development of serotonergic neurons in the caudal raphe nuclei.
    J Neurosci. 1999 Jun 15;19(12):RC12 PMID: 10366650
  56. Circulating hematopoietic progenitors with T lineage potential.
    Nat Immunol. 2004 Sep;5(9):953-60 PMID: 15300246
  57. Activity and tissue-specific expression of the transcription factor NF-E1 multigene family.
    Genes Dev. 1990 Oct;4(10):1650-62 PMID: 2249770
  58. Progression of regulatory gene expression states in fetal and adult pro-T-cell development.
    Immunol Rev. 2006 Feb;209:212-36 PMID: 16448545
  59. Critical roles for transcription factor GATA-3 in thymocyte development.
    Immunity. 2003 Dec;19(6):863-75 PMID: 14670303
  60. Dosage-dependent rescue of definitive nephrogenesis by a distant Gata3 enhancer.
    Dev Biol. 2007 Jan 15;301(2):568-77 PMID: 17046739
  61. Gata-3 is an essential regulator of mammary-gland morphogenesis and luminal-cell differentiation.
    Nat Cell Biol. 2007 Feb;9(2):201-9 PMID: 17187062
  62. Gata3 participates in a complex transcriptional feedback network to regulate sympathoadrenal differentiation.
    Development. 2006 Oct;133(19):3871-81 PMID: 16943277
  63. GATA-3 promotes maturation, IFN-gamma production, and liver-specific homing of NK cells.
    Immunity. 2003 Nov;19(5):701-11 PMID: 14614857
  64. The stream of precursors that colonizes the thymus proceeds selectively through the early T lineage precursor stage of T cell development.
    J Exp Med. 2008 May 12;205(5):1187-99 PMID: 18458114
  65. Conditional deletion of Gata3 shows its essential function in T(H)1-T(H)2 responses.
    Nat Immunol. 2004 Nov;5(11):1157-65 PMID: 15475959
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
1540-9538
Published
2009-12-21
Epub
2009-00-23
Pages
2987-3000
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2806453
Subset
IM
Grants
NIGMS NIH HHS · R01 GM028896 · United States
NHLBI NIH HHS · T35 HL007690 · United States
NIGMS NIH HHS · R01 GM28896 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com