Abstract
Cortical thymocytes from adult mice, separated on the basis of coexpression of CD4 and CD8 or of binding of high levels of peanut agglutinin (PNA), were subdivided according to the level of expression of the T cell receptor (TCR)-CD3 complex. The incidence of dividing cells in the resultant subpopulations was determined by DNA staining. Precursor-product relationships and the timing of TCR-CD3 acquisition were studied using continuous in vivo [3H]TdR labeling and radioautography. The extent of intrathymic selection for TCR specificity in the subpopulations was determined from the incidence of cells bearing V beta 6 or V beta 17a in different mouse strains. The majority of dividing CD4+8+ blast cells expressed extremely low levels of TCR-CD3, indicating that TCR expression and specificity selection generally occurred after division ceased. The [3H]TdR-labeling studies indicated that postdivision TCR expression was rapid, and that those nondividing cortical thymocytes which had not expressed significant levels of TCR by day 1, remained extremely low or negative for their entire 3.6-d lifespan. Small cortical thymocytes which expressed moderate levels of TCR-CD3, were predominantly an unselected population with a lifespan of 3.8 d. A small subgroup of CD4+8+ PNA+ cortical thymocytes expressing high levels of TCR-CD3 was identified as a nondividing intermediate between the small cortical thymocytes expressing moderate levels of TCR and mature medullary thymocytes. These intermediates showed a 1-d lag in [3H]TdR labeling, then a 3.4-d transit time. The cell flux through this intermediate subpopulation was approximately 10(6) cells/d, similar to the rate of turnover of mature thymocytes; thus, although only 3-4% of thymocytes progressed to this intermediate state, once reaching it most then progressed to full maturity. In accordance with this, the incidence of the V beta selection markers within the intermediate subpopulation indicated that both positive and negative selection had already occurred. Selection for TCR specificity in the systems studied appeared to take place among CD4+8+ thymocytes expressing intermediate levels of TCR.
MeSH Terms
Animals
Antibodies, Monoclonal/immunology
Antigens, Differentiation, T-Lymphocyte
Antigens, Surface/immunology
CD3 Complex
CD4 Antigens
CD8 Antigens
Cell Cycle
Female
Flow Cytometry
Fluorescent Antibody Technique
Hematopoietic Stem Cells/cytology,immunology
Immunophenotyping
Kinetics
Lectins
Male
Mice
Mice, Inbred Strains
Peanut Agglutinin
Receptors, Antigen, T-Cell/biosynthesis
T-Lymphocyte Subsets/immunology,metabolism
T-Lymphocytes/cytology,immunology
Thymus Gland/cytology,immunology
Chemicals
Antibodies, Monoclonal
Antigens, Differentiation, T-Lymphocyte
Antigens, Surface
CD3 Complex
CD4 Antigens
CD8 Antigens
Lectins
Peanut Agglutinin
Receptors, Antigen, T-Cell
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Shortman K
Walter and Eliza Hall Institute of Medical Research, Melbourne, Victoria, Australia.
Vremec D
Egerton M
References (33)
33 references, click to expand
-
Intrathymic proliferation of perinatal mouse alpha beta and gamma delta T cell receptor-expressing mature T cells.
Int Immunol. 1990;2(9):859-67
PMID: 2149067
-
Xenogeneic monoclonal antibodies to mouse lymphoid differentiation antigens.
Immunol Rev. 1979;47:63-90
PMID: 398327
-
The kinetics of immature murine thymocyte development in vivo.
Int Immunol. 1990;2(6):501-7
PMID: 2128186
-
Ontogeny of a novel CD4+CD8-CD3- thymocyte subpopulation: a comparison with CD4- CD8+ CD3- thymocytes.
Int Immunol. 1990;2(3):209-18
PMID: 2088486
-
Thymic major histocompatibility complex antigens and the alpha beta T-cell receptor determine the CD4/CD8 phenotype of T cells.
Nature. 1988 Sep 15;335(6187):229-33
PMID: 2970593
-
A rat antibody against a structure functionally related to the mouse T-cell receptor/T3 complex.
Immunogenetics. 1988;28(6):455-8
PMID: 2972613
-
Immature CD4- CD8+ murine thymocytes.
Cell Immunol. 1988 May;113(2):462-79
PMID: 2965990
-
A CD3- subset of CD4-8+ thymocytes: a rapidly cycling intermediate in the generation of CD4+8+ cells.
Eur J Immunol. 1988 Apr;18(4):519-23
PMID: 2966738
-
In vivo thymocyte maturation. BUdR labeling of cycling thymocytes and phenotypic analysis of their progeny support the single lineage model.
J Immunol. 1986 Oct 1;137(7):2115-21
PMID: 3093565
-
Identification and isolation of a T4+T8+ cell with high T3 expression in human thymus: a possible late intermediate in thymocyte differentiation.
J Immunol. 1987 Aug 15;139(4):1065-9
PMID: 3112221
-
Expression and functional significance of the J11d marker on mouse thymocytes.
J Immunol. 1987 Apr 1;138(7):2013-8
PMID: 2435787
-
Cytotoxic T cell clone-specific monoclonal antibodies used to select clonotypic antigen-specific cytotoxic T cells.
Eur J Immunol. 1985 Jan;15(1):31-6
PMID: 2578398
-
Intrathymic maturation of murine T lymphocytes from CD8+ precursors.
Proc Natl Acad Sci U S A. 1989 Oct;86(19):7542-6
PMID: 2508090
-
The thymus has two functionally distinct populations of immature alpha beta + T cells: one population is deleted by ligation of alpha beta TCR.
Cell. 1989 Sep 22;58(6):1047-54
PMID: 2673539
-
The generation of mature T cells requires interaction of the alpha beta T-cell receptor with major histocompatibility antigens.
Nature. 1989 Apr 13;338(6216):591-3
PMID: 2784545
-
Subpopulations of early thymocytes. A cross-correlation flow cytometric analysis of adult mouse Ly-2-L3T4-(CD8-CD4-) thymocytes using eight different surface markers.
J Immunol. 1988 Mar 1;140(5):1461-9
PMID: 2894393
-
Positive selection of CD4+ thymocytes controlled by MHC class II gene products.
Nature. 1988 Dec 1;336(6198):471-3
PMID: 3264054
-
Selective expression of an antigen receptor on CD8-bearing T lymphocytes in transgenic mice.
Nature. 1988 Sep 15;335(6187):271-4
PMID: 3261843
-
T cell tolerance by clonal elimination in the thymus.
Cell. 1987 Apr 24;49(2):273-80
PMID: 3494522
-
A T cell receptor V beta segment that imparts reactivity to a class II major histocompatibility complex product.
Cell. 1987 Apr 24;49(2):263-71
PMID: 3471350
-
Distinct sequence of negative or positive selection implied by thymocyte T-cell receptor densities.
Nature. 1990 Aug 30;346(6287):861-3
PMID: 1975427
-
Self-nonself discrimination by T cells.
Science. 1990 Jun 15;248(4961):1369-73
PMID: 1972594
-
Induction of neonatal tolerance to Mlsa antigens by CD8+ T cells.
Science. 1990 Jun 29;248(4963):1643-6
PMID: 1973003
-
T cell receptor-mediated negative selection of autoreactive T lymphocyte precursors occurs after commitment to the CD4 or CD8 lineages.
J Exp Med. 1990 Sep 1;172(3):835-45
PMID: 2143774
-
Kinetics of mature T-cell development in the thymus.
Proc Natl Acad Sci U S A. 1990 Apr;87(7):2579-82
PMID: 2138780
-
Study of the thymocyte cell cycle by bivariate analysis of incorporated bromodeoxyuridine and DNA content.
Eur J Immunol. 1990 Jun;20(6):1231-6
PMID: 2369916
-
A rapid single step staining technique for DNA analysis by flow microfluorimetry.
J Histochem Cytochem. 1980 Sep;28(9):1021-4
PMID: 6157714
-
Acquisition of immune competence by a subset of human cortical thymocytes expressing mature T cell antigens.
J Immunol. 1982 Sep;129(3):1054-60
PMID: 6980916
-
Thymocyte subpopulations: an experimental review, including flow cytometric cross-correlations between the major murine thymocyte markers.
Thymus. 1983 Sep;5(5-6):245-95
PMID: 6362104
-
Characterization of the murine T cell surface molecule, designated L3T4, identified by monoclonal antibody GK1.5: similarity of L3T4 to the human Leu-3/T4 molecule.
J Immunol. 1983 Nov;131(5):2445-51
PMID: 6415170
-
The major histocompatibility complex-restricted antigen receptor on T cells: distribution on thymus and peripheral T cells.
Cell. 1984 Sep;38(2):577-84
PMID: 6331891
-
Thymus cell migration. Quantitative aspects of cellular traffic from the thymus to the periphery in mice.
Eur J Immunol. 1980 Mar;10(3):210-8
PMID: 7379836
-
Positive selection is an early event in thymocyte differentiation: high TCR expression by cycling immature thymocytes precedes final maturation by several days.
Int Immunol. 1990;2(7):629-38
PMID: 2149065