Expression of a Synthetic Gene Encoding Human Insulin-Like Growth Factor I in Cultured Mouse Fibroblasts

A synthetic gene encoding human insulin-like growth factor I (hIGF-I) was assembled and inserted into an expression vector containing the cytomegalovirus immediate early (CMV-IE) transcriptional regulatory region and portions of the bovine growth hormone gene. The recombinant plasmid encodes a 97 am...

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Veröffentlicht in:Proc. Natl. Acad. Sci. U.S.A.; (United States) 1987-05, Vol.84 (9), p.2638-2642
Hauptverfasser: Bayne, M. L., Cascieri, M. A., Kelder, B., Applebaum, J., Chicchi, G., Shapiro, J. A., Pasleau, F., Kopchick, J. J.
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Sprache:eng
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DNA
MAN
STH
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Zusammenfassung:A synthetic gene encoding human insulin-like growth factor I (hIGF-I) was assembled and inserted into an expression vector containing the cytomegalovirus immediate early (CMV-IE) transcriptional regulatory region and portions of the bovine growth hormone gene. The recombinant plasmid encodes a 97 amino acid fusion protein containing the first 27 amino acids of the bovine growth hormone precursor and the 70 amino acids of hIGF-I. This plasmid, when transiently introduced into cultured mouse fibroblasts, directs synthesis of the fusion protein, subsequent proteolytic removal of the bovine growth hormone signal peptide, and secretion of hIGF-I into the culture medium. Conditioned medium from transfected cells inhibits binding of125I-labeled IGF-I to type I IGF receptors on human placental membranes and to acid-stable human serum carrier proteins. The recombinant hIGF-I produced is biologically active, as monitored by the stimulation of DNA synthesis in vascular smooth muscle cells.
ISSN:0027-8424
1091-6490
1091-6490
DOI:10.1073/pnas.84.9.2638