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Pages 43-50 | Published online: 01 Jul 2009

References

  • Rocha B., Vassalli P., Guy-Grand D. The extrathymic T-cell development pathway. Immunol. Today 1992; 13: 449–454
  • Hayday A. T-cell development: Not in the thymus. Curr. Opin. Immunol. 1993; 3: 525–528
  • Dunon D., Imhof B.A. Mechanisms of thymic homing. Blood 1993; 81: 1–8
  • Haynes B.F. Human thymic epithelium and T cell development: current issues and future directions. Thymus 1990; 16: 143–157
  • Spits H. Early stages in human and mouse T-cell development. Curr. Opin. Immunol. 1994; 6: 212–221
  • Baumhueter S., Singer M.S., Henzel W., Hemmerich S., Renz M., Rosen S.D., Lasky L.A. Binding of L-selectin to the vascular stalomucin CD34. Science 1993; 262: 436–438
  • Brandt J., Srour E.F., van Besien K., Briddell R.A., Hoffman R. Cytokine-dependent long-term culture of highly enriched precursors of hematopoietic progenitor cells from human bone marrow. J. Clin Invest. 1990; 86: 932–941
  • Lansdorp P.M., Dragowska W. Long-term erythropoiesis from constant numbers of CD34+ cells in serum-free cultures initiated with highly purified progenitor cells from human bone marrow. J. Exp. Med. 1992; 175: 1501–1509
  • Lansdorp P.M., Sutherland H.J., Eaves C.J. Selective expression of CD45 isoforms on functional subpopulations of CD34+ hemopoietic cells from human bone marrow. J. Exp. Med. 1990; 172: 363–366
  • Andrews R.G., Singer J.W., Bernstein I.D. Precursors of colony-forming cells in humans can be distinguished from colony-forming cells by expression of the CD33 and CD34 antigens and light scatter properties. J. Exp. Med. 1989; 169: 1721–1731
  • Buhring H.J., Asenbauer B., Katrilaka K., Hummel G., Busch F.W. Sequential expression of CD34 and CD33 antigen on myeloid colony-forming cells. Eur. J. Immunol. 1989; 42: 143–149
  • Terstappen L. W. M. M., Huang S., Safford M., Lansdorp P.M., Loken M.R. Sequential generations of hematopoietic colonies derived from single nonlineage-committed CD34+CD38-progenitor cells. Blood 1991; 77: 1218–1227
  • Sutherland H.J., Eaves C.J., Eaves A.C., Dragowska W., Landsdorp P.M. Characterization and partial purification of human marrow cells capable of initiating long-term hematopoiesis in vitro. Blood 1989; 74: 1563–1570
  • Craig W., Kay R., Cutler R.L., Lansdorp P.M. Expression of Thy-1 on human hematopoietic progenitor cells. J. Exp. Med. 1993; 177: 1331–1342
  • Baum C.M., Weissman I.L., Tsukamoto A.S., Buckle A.-M., Peault B. Isolation of a candidate human hematopoietic stem-cell population. Proc. Natl. Acad. Sci. USA 1992; 89(7): 2804–2808
  • McCune J.M., Namikawa R., Kaneshima R., Schultz L.D., Lieberman M., Weissman I.L. The SCID-hu mouse: murine model for the analysis of human hematolymphoid differentiation and function. Science 1988; 241: 1632–1639
  • Péault B., Weissman I.L., Baum C., McCune J.M., Tsukamoto A. Lymphoid reconstitution of the human fetal thymus in SCID mice with CD34+ precursor cells. J. Exp. Med 1991; 174(5): 1283–1286
  • Bárcena A., Muench M.O., Galy A. H. M., Cupp J., Roncarolo M.G., Phillips J.H., Spits H. Phenotypic and functional analysis of T-cell precursors in the human fetal liver and thymus: CD7 expression in the early stages of T-and myeloid-cell development. Blood 1993; 82: 3401–3414
  • Miller J.S., Verfaillie C., McGlave P. The generation of human natural killer cells from CD3+/VDR-primitive progenitors in long-term bone marrow culture. Blood 1992; 80: 2182–2187
  • Loken M.R., Shah V.O., Dattilio K.L., Civin C.I. Flow cytometric analysis of human bone marrow: I. Normal erythroid development. Blood 1987; 69: 255–263
  • Terstappen L. W. M. M., Loken M.R. Myeloid cell differentiation in normal bone marrow and acute myeloid leukemia assessed by multi-dimentional flow cytometry. Anal. Cell. Pathol. 1990; 2: 229–240
  • Terstappen L. W. M. M., Safford M., Loken M.R. Flow cytometric analysis of human bone marrow: III. Neutrophil development. Leukemia 1990; 4: 657–663
  • Loken M.R., Shah V.O., Dattilio K.L., Civin C.I. Flow cytometric analysis of human bone marrow: II. Normal B lymphocyte development. Blood 1987; 70: 1316–1324
  • Grümayer E.R., Griesinger F., Hummel D.S., Brunning R.D., Kersey J.H. Identification of novel B-lineage cells in human fetal bone marrow that coexpress CD7. Blood 1991; 77: 64–68
  • Panzer-Grümayer E.R., Panzer S., Wolf M., Majdic O., Haas O.A., Kersey J.H. Characterization of CD7+CD19+ lymphoid cells after Epstein-Barr virus transformation. J. Immunol. 1993; 151: 92–99
  • Chabannon C., Wood P., Torok-Storb B. Expression of CD7 on normal human myeloid progenitors. J. Immunol. 1992; 149: 2110–2113
  • Gore S.D., Kastan M.B., Civin C.I. Normal human bone marrow precursors that express terminal deoxynucleotidyl transferase include T-cell precursors and possible lymphoid stem cells. Blood 1991; 77: 1681–1690
  • Tjonnfjord G.E., Veiby O.P., Steen R., Egeland T. T lymphocyte differentiation in vitro from adult human prethymic CD34+ bone marrow cells. J. Exp. Med. 1993; 177: 1531–1539
  • Yeoman H., Gress R.E., Bare C.V., Leary A.G., Boyse E.A., Bard J., Shultz L.D., Harris D.T., De Luca D. Human bone marrow and umbilical cord blood cells generate CD4+ and CD8+ single-positive T cells in murine fetal thymus organ culture. Proc. Natl. Acad. Sci. USA 1993; 90: 10778–10782
  • Reinherz E.L., Kung P.C., Goldstein G., Levey R.H., Schlossman S.F. Discrete stages of human intrathymic differentiation: Analysis of normal thymocytes and leukemic lymphoblasts of T-cell lineage. Proc. Nail. Acad. Sci. USA 1980; 77: 1588–1592
  • Haynes B.F., Denning S.M., Singer K.H., Kurtzberg J. Ontogeny of T-cell precursors: A model for the initial stages of human T-cell development. Immunol. Today 1989; 10: 87–91
  • Dalloul A.H., Mossalayi M.D., Dellagi K., Bertho J., Debre P. Factors requirements for activation and proliferation step of human CD2+3–4-8-early thymocytes. Eur. J. Immunol. 1989; 19: 1985–1990
  • Terstappen L. W. M. M., Huang S., Picker L.J. Flow cytometric assessment of human T-cell differentiation in thymus and bone marrow. Blood 1992; 79: 666–677
  • Kurtzberg J., Denning S.M., Nycum L.M., Singer K.H., Haynes B.F. Immature human thymocytes can be driven to differentiate into nonlymphoid lineages by cytokines from thymic epithelial cells. Proc. Natl. Acad. Sci. USA 1989; 86: 7575–7579
  • Hori T., Cupp J., Wrighton N., Lee F., Spits H. Identification of a novel human thymocyte subset with a phenotype of CD3-, CD4+, CD8α+β-: Possible progeny of the CD3-, CD4-, CD8-subset. J. Immunol. 1991; 146: 4078–4084
  • Schmitt C., Ktorza S., Sarun S., Blanc C., De Jong R., Debre P. CD34-expressing human thymocyte precursors proliferate in response to interleukin-7 but have lost myeloid differentiation potential. Blood 1993; 82: 3675–3685
  • Galy A., Verma S., Barcena A., Spits H. Precursors of CD3+CD4+CD8+ cells in the human thymus are defined by expression of CD34. Delineation of early events in human thymic development. J. Exp. Med 1993; 178: 391–401
  • Sanchez M.J., Spits H., Lanier L.L., Phillips J.H. Human NK committed thymocytes and their relation to the T cell lineage. J. Exp. Med 1993; 178: 1857–1866
  • Wu L., Scollay R., Egerton M., Pearse M., Spangrude G.J., Shortman K. CD4 expressed on earliest T-lineage precursor cells in the adulte murine thymus. Nature 1991; 349: 71–74
  • Kraft D.L., Weissman I.L., Waller E.K. Differentiation of CD3–48-human fetal thymocytes in vivo: Characterization of a CD3–4+8-intermediate. J. Exp. Med. 1993; 178: 265–277
  • Denning S.M., Jones D.M., Ware R.E., Weinhold K.J., Brenner M.B., Haynes B.F. Analysis of clones derived from human CD7+4–8–3-thymocytes. Int. Immunol. 1991; 3: 1015–1024
  • Ehlich A., Schaal S., Gu H., Kitamura D., Müller W., Rajewsky K. Immunoglobulin heavy and light chain genes rearrange independently at early stages of B cell development. Cell 1993; 72: 695–704
  • Reth M. Antigen receptors on B lymphocytes. Annu. Rev. Immunol. 1992; 10: 97–121
  • Lassoued K., Nuñez C.A., Billips L., Kubagawa H., Monteiro R.C., Le Bien T.W., Cooper M.D. Expression of surrogate light chain receptors is restricted to a late stage in pre-B cell differentiation. Cell 1993; 73: 73–86
  • Van Dongen J. J. M., Comans-Bitter W.M., Wolvers-Tettero I. L. M., Borst J. Development of human T lymphocytes and their thymus dependency. Thymus 1990; 16: 207–234
  • Furley A.J., Mizutani S., Weilbaecher K., Dhaliwal H.S., Ford A.M., Chan L.C., Molgaard H.V., Toyonaga B., Mak T., van de Elzen P. Developmentally regulated rearrangement and expression of genes encoding the T cell receptor-T3 complex. Cell 1986; 46: 75–87
  • Groettrup M., Von Boehmer H. A role for a pre-T-cell receptor in T-cell development. Immunol. Today 1993; 14: 610–614
  • Groettrup M., Ungewiss K., Azogui O., Palacios R., Owen M.J., Hayday A.C., Von Boehmer H. A novel disulfide-1 inked heterodimer on pre-T cells consists of the T cell receptor beta chain and a 33 kd glycoprotein. Cell 1993; 75: 283–294
  • Levelt C.N., Ehrfeld A., Eichman K. Regulation of thymocyte development through CD3. I. Timepoint of ligation of CD3E determines clonal deletion or induction of developmental program. J. Exp. Med 1993; 177: 707–716
  • Levelt C.N., Carsetti R., Eichmann K. Regulation of thymocyte development through CD3. II. Expression of T cell receptor beta CD3E and maturation to the CD4+8+ stage are highly correlated in individual thymocytes. J. Exp. Med. 1993; 178: 1867–1875
  • Levin S.D., Anderson S.J., Forbush K.A., Perlmutter R.M. A dominant-negative transgene defines a role for p56lck in thymopoiesis. EMBOJ. 1993; 12: 1671–1680
  • Anderson S.J., Levin S.D., Perlmutter R.M. Protein tyrosine kinase p56lck controls allelic exclusion of T-cell receptor beta-chain genes. Nature 1993; 365: 552–554
  • Fox D.A., Hussey R.E., Fitzgerald K.A., Bensussan A., Daley J.F., Schlossman S.F., Reinherz E.L. Activation of human thymocytes via 50KD T11 sheep erythrocyte binding protein induces the expression of interleukin 2 receptors on both T3+ and T3-populations. J. Immunol. 1985; 134: 330–335
  • Toribio M.L., Alonso J.M., Bárcena A., Gutierrez J.C., de la Hem A., Marcos M. A. R., Marquez C., Martinez A.C. Human T-cell precursors: Involvement of the IL-2 pathway in the generation of mature T cells. Immunol. Rev. 1988; 104: 55–79
  • Ueno Y., Hays E.F., Hultin L., Uittenboogaart C.H. Human thymocytes do not respond to IL-2 after removal of mature ‘bright’ CD5 positive cells. Cell. Immunol. 1989; 124: 239–251
  • Pierres A., Cerdan C., Lopez M., Mawas C., Olive D. CD31ow human thymocyte populations can readily be triggered via the CD2 and/or CD28 activation pathways whereas the CD3 pathway remains nonfunctional. J. Immunol. 1990; 144: 1202–1207
  • Turka L.A., Fletcher M.C., Craighead N., Thompson C.B., June C.H. Defective signal transduction by the CD2 molecule in immature T-cell receptor/CD3-thymocytes. Proc. Natl. Acad. Sci. USA 1992; 89: 8706–8710
  • Mentz F., Ouaaz F., Michel A., Blanc C., Hervé P., Bismuth G., Debre P., Merle-Béral H., Mossalayi M.D. Maturation of acute T lymphoblastic leukemia cells following CD2-ligation and subsequent treatment with interleukin-2. Blood 1994, (in press)
  • Schorle H., Holtschke T., Hunig T., Schimpl A., Horak I. Development and function of the T cells in mice rendered interleukin-2 deficient by gene targeting. Nature 1991; 352: 621–624
  • Bárcena A., Toribio M.L., Pezzi L., Martinez A.C. A role if Interleukin-4 in the differentiation of mature T cell receptor γ/δ+ cells from human intrathymic T cell precursors. J. Exp. Med. 1990; 172: 439–446
  • Kühn R., Rajewsky K., Müller W. Generation and analysis of interleukin-4 deficient mice. Science 1991; 254: 707–710
  • Muegge K., Vila M.P., Durum S.K. Interleukin-7: A cofactor for V(D)J rearrangement of the T cell receptor beta gene. Science 1993; 261: 93–95
  • Appasamy P.M., Kenniston T.W., Jr., Weng Y., Holt E.C., Kost J., Chambers W.H. Interleukin 7-induced expression of specific T cell receptor gamma variable region genes in murine fetal liver cultures. J. Exp. Med 1993; 178: 2201–2206
  • Groh V., Fabbi M., Strominger J.L. Maturation or differentiation of human thymocytes precursors in vitro?. Proc. Natl. Acad. Sci. USA 1990; 87: 5973–5977
  • Dalloul A., Laroche L., Bagot M., Mossalayi M.D., Fourcade C., Thacker D.J., Hogge D.E., Merle-Béral H., Debré P., Schmitt C. Interleukin-7 is a growth factor for Sézary lymphoma cells. J. Clin. Invest. 1992; 90: 1054–1060
  • Merkenschlager M., Fisher A.G. Human postnatal thymocytes generate phenotypically immature CD3dim, CDSdim, CD1 a bright progeny in organ culture. J. Immunol. 1992; 148: 1012–1015
  • Jenkinson E.J., Anderson G. Fetal thymic organ cultures. Curr. Opin. Immunol. 1994; 6: 293–297
  • Noguchi M., Huafang Y., Rosenblatt H.M., Fillpovich A.H., Adelstein S., Modi W.S., McBride O.W., Leonard W.J. Interleukin-2 receptor y chain mutation results in X-linked severe combined immunodeficiency in humans. Cell 1993; 73: 147–157
  • DiSanto J.P., Dautry-Varsat A., Certain S., Fischer A., de Saint Basile G. Interleukin-2 (IL-2) receptor y chain mutations in X-linked severe combined immunodeficiency disease result in the loss of high-affinity IL-2 receptor binding. Eur. J. Immunol. 1994; 24: 475–479
  • Kondo M., Takeshita T., Ishii N., Nakamura M., Watanabe S., Arai K., Sugamura K. Sharing of the interleukin-2 (IL-2) receptor gamma chain between receptors for IL-2 and IL-4. Science 1993; 262: 1874–1877
  • Kondo M., Takeshita T., Higuchi M., Nakamura M., Sudo T., Nishikawa S.-I., Sugamura K. Functional participation of the IL-2 receptor gamma chain in IL-7 receptor complexes. Science 1994; 263: 1453–1454
  • Noguchi M., Nakamura Y., Russell S.M., Ziegler S.F., Tsang M., Cao X., Leonard W.J. Interleukin-2 receptor gamma chain: A functional component of the interleukin-7 receptor. Science 1993; 262: 1877–1880
  • Russell S.M., Keegan A.D., Harada N., Nakamura Y., Noguchi M., Leland P., Friedmann M.C., Miyajima A., Puri R.K., Paul W.E., Leonard W.J. Interleukin-2 receptor gamma chain: A functional component of the interleukin-4 receptor. Science 1993; 262: 1880–1883
  • Maraskovsky E., Peschon J.J., Morrissey P.J., Ramsdell F., Grabstein K.H., Maliszewski C., Gliniak B., Picha K., Williams D.E., Ware C.B., Meyer J.D., Ziegler S.F., Davidson B.L. Lymphoid development in mice lacking IL7-receptor. Keystone Symposium on Molecular & Cellular Biology Feb 26-Apr 11, 1994 7. Cell. Biol. 1994; 422, 18D, Abstr. V648

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