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PMID: 2026614 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Mutation of the two carboxyl-terminal tyrosines results in an insulin receptor with normal metabolic signaling but enhanced mitogenic signaling properties.

The Journal of biological chemistry ·Vol. 266 ·No. 14 ·1991-05-15 ·Pages 9135-9

Takata Y, Webster NJ, Olefsky JM

Abstract

Our previous studies have shown that the deletion of the insulin receptor carboxyl terminus impairs metabolic, but augments mitogenic, signaling (McClain, D. A., Maegawa, H., Levy, J., Huecksteadt, T., Dull, T. J., Lee, J., Ullrich, A., and Olefsky, J. M. (1988) J. Biol. Chem. 263, 8904-8911; Thies, R.S., Ulrich, A., and McClain, D. A. (1989) J. Biol. Chem. 264, 12820-12825). To explore further the regulatory role of the insulin receptor carboxyl terminus, a mutant insulin receptor was constructed in which the two tyrosines (Y1316 and Y1322) on the carboxyl terminus were replaced with phenylalanines. Rat 1 fibroblasts expressing high levels of this mutant receptor (Y/F2 cells) exhibited normal insulin binding and normal insulin internalization. The absence of the two tyrosines in the carboxyl terminus did not affect the phosphotransferase activity of the beta-subunit and insulin-stimulated glucose transport. However, the Y/F2 cells showed markedly enhanced sensitivity for insulin-stimulated DNA synthesis. Dose-response curves for both insulin-stimulated thymidine uptake and 5-bromo-2-deoxyuridine incorporation in the Y/F2 cell lines were shifted to the left (4-10-fold) compared with those observed in the cells expressing similar numbers of wild type receptors. Thus, the two tyrosines of the insulin receptor carboxyl terminus do not modulate the kinase function of the insulin receptor, although they are autophosphorylated in native receptors. Moreover, these tyrosines are not necessary for stimulation of glucose transport. On the other hand, these results suggest that the two carboxyl-terminal tyrosine residues exert an inhibitory effect on mitogenic signaling in native insulin receptors.

MeSH Terms
Animals Cell Line DNA/biosynthesis DNA Mutational Analysis Deoxyglucose/metabolism In Vitro Techniques Insulin/metabolism Mitosis Phosphorylation Protein-Tyrosine Kinases/metabolism Rats Receptor, Insulin/genetics,physiology Signal Transduction Structure-Activity Relationship Tyrosine/physiology
Chemicals
Insulin Tyrosine DNA Deoxyglucose Protein-Tyrosine Kinases Receptor, Insulin
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Takata Y
Department of Medicine, University of California, San Diego, La Jolla 92093.
Webster N J
Olefsky J M
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1991-05-15
Pages
9135-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
PHS HHS · 33651 · United States
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