Isolation and Characterization of Lymphokine cDNA Clones Encoding Mouse and Human IgA-Enhancing Factor and Eosinophil Colony-Stimulating Factor Activities: Relationship to Interleukin 5

Conditioned medium from the Con A-treated mouse helper T-cell clone Ly1+2-/9 contains activities that enhance the production of IgA by mouse B cells and induce human cord blood cells to form eosinophil colonies. We have isolated a cDNA sequence that expresses IgA-enhancing factor and eosinophil colo...

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Veröffentlicht in:Proc. Natl. Acad. Sci. U.S.A.; (United States) 1987-11, Vol.84 (21), p.7388-7392
Hauptverfasser: Yokota, Takashi, Coffman, Robert L., Hagiwara, Hajime, Rennick, Donna M., Takebe, Yutaka, Yokota, Kyoko, Gemmell, Lorraine, Shrader, Barbara, Yang, Gloria, Meyerson, Patricia, Luh, Jeanne, Hoy, Pamala, Pène, Jérome, Brière, Francine, Spits, Hergen, Banchereau, Jacques, De Vries, Jan, Lee, Frank D., Arai, Naoko, Arai, Ken-Ichi
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Sprache:eng
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DNA
MAN
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Zusammenfassung:Conditioned medium from the Con A-treated mouse helper T-cell clone Ly1+2-/9 contains activities that enhance the production of IgA by mouse B cells and induce human cord blood cells to form eosinophil colonies. We have isolated a cDNA sequence that expresses IgA-enhancing factor and eosinophil colony-stimulating factor activities from a cDNA library prepared from activated Ly1+2-/9 cells. Based on homology with the mouse cDNA sequence, a human cDNA sequence coding for an interleukin with IgA-enhancing factor and eosinophil colony-stimulating factor activities was isolated from a cDNA library prepared from a human T-cell clone stimulated with anti-T3 antibody and phorbol 12-myristate 13-acetate. DNA sequence analyses revealed that mouse and human cDNA clones encode proteins of 133 and 134 amino acids, respectively, that are identical to cDNA clones encoding the T-cell replacing factor I and B-cell growth factor II activities. These results establish that a single cDNA clone encodes a protein that acts as a growth and differentiation factor for both B cells and eosinophils.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.84.21.7388