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Expression cloning of an interferon-inducible 17-kDa membrane protein implicated in the control of cell growth
G A Deblandre1, O P Marinx, S S Evans
1Département de Biologie Moléculaire, Université Libre de Bruxelles, Belgium.
Abstract:
Interferon-inducible membrane proteins of approximately 17 kDa have been suggested to play a role in the antiproliferative activity of interferons based on (1) their pattern of induction in interferon-sensitive and -resistant cell lines and (2) the ability of a membrane fraction enriched in 17-kDa proteins to inhibit cell growth. To gain insight into the nature of the proteins that mediate the antiproliferative activity of interferons, a monoclonal antibody, 13A5, was generated that reacted specifically with a 17-kDa interferon-inducible cell surface protein. The expression pattern of this 17-kDa protein by human cell lines correlated with sensitivity to the antiproliferative activity of interferons. To obtain information regarding the structure of this protein, the 13A5 antibody was used to screen COS cells transfected with a human cDNA expression library. Sequence analysis of a full-length cDNA clone revealed identity with the 9-27 cDNA, previously isolated on the basis of its interferon inducibility by differential screening. In addition, the 17-kDa protein encoded by the 9-27 gene was shown to be identical to the Leu-13 antigen. Leu-13 was previously identified as a 16-kDa interferon-inducible protein in leukocytes and endothelial cells and is a component of a multimeric complex involved in the transduction of antiproliferative and homotypic adhesion signals. These results suggest a novel level of cellular regulation by interferons involving a membrane protein, encoded by the interferon-inducible 9-27 gene, which associates with other proteins at the cell surface, forming a complex relaying growth inhibitory and aggregation signals.
Insights
Interferon-inducible membrane proteins, like the 17-kDa Leu-13 antigen, are crucial for interferon
Area of Science:
- Cell Biology
- Immunology
- Molecular Biology
Background:
- Interferon-inducible membrane proteins of approximately 17 kDa are implicated in the antiproliferative effects of interferons.
- Previous studies suggested their role based on induction patterns and growth inhibition by membrane fractions.
Purpose of the Study:
- To identify the specific 17-kDa interferon-inducible membrane protein mediating antiproliferative activity.
- To elucidate the structure and function of this protein in cellular signaling.
Main Methods:
- Generation of a monoclonal antibody (13A5) targeting a 17-kDa interferon-inducible cell surface protein.
- Screening of a human cDNA expression library using the 13A5 antibody.
- Sequence analysis of cDNA and identification of the encoded protein.
Main Results:
- The 13A5 antibody specifically recognized a 17-kDa interferon-inducible cell surface protein.
- Expression of this protein correlated with cellular sensitivity to interferon's antiproliferative effects.
- Sequence analysis identified the protein as identical to the Leu-13 antigen, encoded by the 9-27 gene.
- Leu-13 is a component of a multimeric complex involved in antiproliferative and adhesion signaling.
Conclusions:
- A novel level of cellular regulation by interferons involves the 17-kDa membrane protein (Leu-13/9-27).
- This protein associates with others at the cell surface to form a complex that relays growth inhibitory and aggregation signals.