A human T lymphocyte differentiation marker defined by monoclonal antibodies that block E-rosette formation. 1981

F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg

A new human T cell surface antigen, Leu-5, has been defined using a set of monoclonal antibodies that block rosette formation between T lymphocytes and sheep erythrocytes (SRBC). Four antibodies obtained from 2 different fusions using 2 immunized mouse strains all reacted with the same antigen. All these antibodies gave identical quantitative immunofluorescence (FACS) profiles, all gave the same staining profiles and intensities when used singly or in combinations, and all precipitated the same molecule. The antigen is a single polypeptide chain, 40,000 to 50,000 Mr, and is found on all thymocytes, peripheral T cells, and some null cells, but not on B cells. Leu-5 is a differentiation antigen that decreases in density as thymocytes mature to peripheral T lymphocytes. Thus, the Leu-5+ subpopulations ranked in order of decreasing Leu-5 density are: a subpopulation of subcapsular thymocytes greater than cortical and medullary thymocytes greater than peripheral T cells (cytotoxic/suppressor subset) greater than peripheral T cells (helper/inducer subset). The density distribution pattern of Leu-5 parallels the relative affinity of thymocytes and peripheral T lymphocytes for SRBC. We suggest that Leu-5 is either identical to or closely associated with the human T lymphocyte receptor for SRBC.

UI MeSH Term Description Entries
D007223 Infant A child between 1 and 23 months of age. Infants
D008027 Light That portion of the electromagnetic spectrum in the visible, ultraviolet, and infrared range. Light, Visible,Photoradiation,Radiation, Visible,Visible Radiation,Photoradiations,Radiations, Visible,Visible Light,Visible Radiations
D004591 Electrophoresis, Polyacrylamide Gel Electrophoresis in which a polyacrylamide gel is used as the diffusion medium. Polyacrylamide Gel Electrophoresis,SDS-PAGE,Sodium Dodecyl Sulfate-PAGE,Gel Electrophoresis, Polyacrylamide,SDS PAGE,Sodium Dodecyl Sulfate PAGE,Sodium Dodecyl Sulfate-PAGEs
D005455 Fluorescent Antibody Technique Test for tissue antigen using either a direct method, by conjugation of antibody with fluorescent dye (FLUORESCENT ANTIBODY TECHNIQUE, DIRECT) or an indirect method, by formation of antigen-antibody complex which is then labeled with fluorescein-conjugated anti-immunoglobulin antibody (FLUORESCENT ANTIBODY TECHNIQUE, INDIRECT). The tissue is then examined by fluorescence microscopy. Antinuclear Antibody Test, Fluorescent,Coon's Technique,Fluorescent Antinuclear Antibody Test,Fluorescent Protein Tracing,Immunofluorescence Technique,Coon's Technic,Fluorescent Antibody Technic,Immunofluorescence,Immunofluorescence Technic,Antibody Technic, Fluorescent,Antibody Technics, Fluorescent,Antibody Technique, Fluorescent,Antibody Techniques, Fluorescent,Coon Technic,Coon Technique,Coons Technic,Coons Technique,Fluorescent Antibody Technics,Fluorescent Antibody Techniques,Fluorescent Protein Tracings,Immunofluorescence Technics,Immunofluorescence Techniques,Protein Tracing, Fluorescent,Protein Tracings, Fluorescent,Technic, Coon's,Technic, Fluorescent Antibody,Technic, Immunofluorescence,Technics, Fluorescent Antibody,Technics, Immunofluorescence,Technique, Coon's,Technique, Fluorescent Antibody,Technique, Immunofluorescence,Techniques, Fluorescent Antibody,Techniques, Immunofluorescence,Tracing, Fluorescent Protein,Tracings, Fluorescent Protein
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000906 Antibodies Immunoglobulin molecules having a specific amino acid sequence by virtue of which they interact only with the ANTIGEN (or a very similar shape) that induced their synthesis in cells of the lymphoid series (especially PLASMA CELLS).
D000911 Antibodies, Monoclonal Antibodies produced by a single clone of cells. Monoclonal Antibodies,Monoclonal Antibody,Antibody, Monoclonal
D000954 Antigens, Surface Antigens on surfaces of cells, including infectious or foreign cells or viruses. They are usually protein-containing groups on cell membranes or walls and may be isolated. Cell Surface Antigens,Surface Antigens,Surface Markers, Immunological,Cell Surface Antigen,Immunologic Surface Markers,Markers, Immunological Surface,Surface Antigen,Surface Markers, Immunologic,Antigen, Cell Surface,Antigen, Surface,Antigens, Cell Surface,Immunological Surface Markers,Markers, Immunologic Surface,Surface Antigen, Cell,Surface Antigens, Cell
D001402 B-Lymphocytes Lymphoid cells concerned with humoral immunity. They are short-lived cells resembling bursa-derived lymphocytes of birds in their production of immunoglobulin upon appropriate stimulation. B-Cells, Lymphocyte,B-Lymphocyte,Bursa-Dependent Lymphocytes,B Cells, Lymphocyte,B Lymphocyte,B Lymphocytes,B-Cell, Lymphocyte,Bursa Dependent Lymphocytes,Bursa-Dependent Lymphocyte,Lymphocyte B-Cell,Lymphocyte B-Cells,Lymphocyte, Bursa-Dependent,Lymphocytes, Bursa-Dependent

Related Publications

F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
June 1982, Scandinavian journal of immunology,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
July 1984, Journal of clinical pathology,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
June 1976, Scandinavian journal of immunology,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
January 1981, Immunological reviews,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
April 1992, Immunology letters,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
January 1985, Hybridoma,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
April 1980, The Journal of experimental medicine,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
January 1982, Advances in experimental medicine and biology,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
January 1988, Progress in experimental tumor research,
F D Howard, and J A Ledbetter, and J Wong, and C P Bieber, and E B Stinson, and L A Herzenberg
August 1975, Immunology,
Copied contents to your clipboard!