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D Cosman

Publications and source records attributed to D Cosman.

98 records · Page 6Linked to original sources

High level stable expression of human interleukin-2 receptors in mouse cells generates only low affinity interleukin-2 binding sites.

A bovine papilloma virus-derived vector was used to direct the high level expression in mouse C127 cells of three different cDNAs encoding the human interleukin-2 receptor. These were: the previously described cDNA clone isolated from the T-cell lymphoma, HUT-102; a cDNA clone isolated from mitogen-activated, normal peripheral blood T cells; and an altered version of the HUT-102 receptor in which Ser247, believed to be the site of protein kinase C-mediated phosphorylation, has been changed to an Ala residue. Fluorescence-activated cell-sorting using a monoclonal antibody directed against the human IL-2 receptor was used to derive stable lines of C127 cells expressing from 2-6 X 10(6) IL-2 binding sites per cell. However, all of these receptors bound IL-2 with low affinity.

Amino Acid Sequence↗

Cloning, sequence, and expression of bovine interleukin 2.

Interleukin 2 (IL-2) cDNA clones have been isolated from both human and murine sources. We report here the isolation of a cDNA clone encoding bovine IL-2. This was accomplished by screening a cDNA library constructed from lectin-stimulated bovine lymph node cells, using a human IL-2 probe. Bovine IL-2 is composed of 155 amino acids and has a predicted molecular weight of 19,555. Alignment of the amino acid sequence with human IL-2 indicates that mature bovine IL-2 is composed of 135 amino acids and has a predicted molecular weight of 15,452. It has an amino acid homology of 65% with human IL-2 and 50% with murine IL-2. Bovine IL-2 is unique among IL-2 homologs in that it has a single N-linked glycosylation site. Biologically active bovine IL-2 was synthesized in an Escherichia coli expression system.

Animals↗

Regulation of antibody production in vitro by granulocyte-macrophage colony stimulating factor.

The precise molecular characteristics and the mode of action of the T cell derived lymphokines which augment antibody production in vitro remain uncertain. The use of ill-defined culture supernatants to dissect the cellular interactions in vitro involved in antibody production can lead to ambiguous results as the factors may act either on a contaminating non-B-lymphoid population or directly on the B lymphocyte. We report herein the development of a system for measuring in vitro primary antibody responses by murine spleen cells in which endogenous lymphokine production has been minimized by the in vivo administration of cytotoxic antibodies to deplete T lymphocytes and the addition of the glucocorticosteroid, dexamethasone, throughout the culture period. Using such an assay, a lymphokine activity was detected which was capable of augmenting the plaque forming cell response. This lymphokine was present in culture supernatant derived from the lectin activation of the T cell lymphoma, LBRM-33 and was distinct from other known B cell activators, notably IL-2 and IFN gamma. Biochemical purification of this activity indicated that it might be identical to granulocyte-macrophage colony stimulating factor (GM-CSF). The use of recombinant-derived GM-CSF protein unambiguously showed the role of this lymphokine in antibody production. These experiments demonstrated for the first time, the involvement of a hematopoietic factor in antigen-specific immune responses. Moreover, these results demonstrated an important regulatory circuit in the generation of antibody producing B cells in which GM-CSF, derived from activated T cells, stimulates macrophage function.

Animals↗

Secretion of a transplantation-related antigen.

Analysis of mouse cDNA clones has led to the identification of a class I (H-2)-related gene that encodes a truncated transplantation-like antigen. Unlike the products of the class I genes (H-2K, H-2D, and H2-L), which are synthesized and displayed on the surface of all cells, the class I-related gene product is expressed only in liver cells and is secreted. The region of the secreted molecule corresponding to the extracellular domain of the membrane-bound class I antigens shows unusual amino acid substitutions at positions otherwise invariably conserved. There is also loss of a glycosylation site that is used in all class I antigens. Within the region corresponding to the transmembrane domain are multiple nonconservative substitutions of hydrophobic residues, alterations that render the encoded protein incapable of inserting into the plasma membrane. Toward the end of the same domain, the polypeptide chain terminates abruptly and thus lacks the intracellular domain present on all class I antigens. A candidate for this secreted molecule, detected using various heteroantisera against class I antigens, has been identified. A potential role for this serum protein in mediating active tolerance is discussed.

Amino Acid Sequence↗

Tissue-specific expression of an unusual H-2 (class I)-related gene.

Sequence analysis of mouse H-2 cDNA clones has suggested the existence of an unusual class of H-2 (class I)-related antigens that, unlike the classical membrane-associated molecules, retains only the extracellular portion and is likely to be secreted. The expression of this class of H-2-related mRNA is tissue restricted; it is detectable in liver but not in brain, kidney, testis, thymus, or spleen. In the liver, its accumulation represents about one-fourth of all the H-2 (class I)-specific transcripts. This class of transcripts is present in mice of different inbred strains, but the level of expression differs markedly among them. A model is presented in which such a soluble form of the H-2 antigen would play the role of a blocking factor in maintaining peripheral inhibition of H-2 recognition. This would ensure tolerance of the H-2 molecule as a self antigen while permitting it to act as a guidance molecule for the associative recognition of viral and tumor antigens by cytotoxic T cells.

Animals↗

Cloning, sequence and expression of human interleukin-2 receptor.

T lymphocytes, essential for the generation of a normal immune response, require the presence of the lymphokine interleukin-2 (IL-2) in order to proliferate. Cells that respond to IL-2 possess a surface receptor glycoprotein specific for this lymphokine. We have recently purified and chemically characterized the IL-2 receptor from both phytohaemagglutinin-activated human T cells and the human T-cell lymphoma HUT-102 (ref. 5). From the NH2-terminal protein sequence obtained in that study, we have now used synthetic oligonucleotides to probe a complementary DNA library, prepared from HUT-102 messenger RNA, for the presence of cDNA clones that might code for the IL-2 receptor. Two cDNA clones were isolated which had closely related DNA sequences. Interestingly, only one coded for an active receptor when transfected into COS-7 cells. This clone contained a 216-base pair (bp) insert that was not present in the other clone. The insert was flanked by an 8-bp direct repeat reminiscent of a transposable element, and appeared to code for a region of marked structural homology to the NH2-terminal region of the receptor molecule.

Amino Acid Sequence↗