14-3-3 Proteins interact with the insulin-like growth factor receptor but not the insulin receptor1

We have used a yeast two-hybrid system to identify proteins which bind to the cytosolic portion of the type 1 insulin-like growth factor (IGF) receptor (IGFIR) but not the insulin receptor (IR). This analysis identified 14-3-3β and ζ proteins. 14-3-3β also binds to the IGFIR but not the IR in vitro...

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Veröffentlicht in:Biochemical journal 1997-11, Vol.327 (3), p.765-771
Hauptverfasser: FURLANETTO, W. Richard, DEY, R. Bhakta, LOPACZYNSKI, Wiodzimierz, NISSLEY, S. Peter
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container_end_page 771
container_issue 3
container_start_page 765
container_title Biochemical journal
container_volume 327
creator FURLANETTO, W. Richard
DEY, R. Bhakta
LOPACZYNSKI, Wiodzimierz
NISSLEY, S. Peter
description We have used a yeast two-hybrid system to identify proteins which bind to the cytosolic portion of the type 1 insulin-like growth factor (IGF) receptor (IGFIR) but not the insulin receptor (IR). This analysis identified 14-3-3β and ζ proteins. 14-3-3β also binds to the IGFIR but not the IR in vitro and 14-3-3-IGFIR complexes are present in insect cells overexpressing the IGFIR cytoplasmic domain. 14-3-3 proteins are substrates of the IGFIR in the yeast system and in vitro. The interaction of 14-3-3 with the IGFIR requires receptor-kinase activity and maps to the C-terminus of the receptor, but does not depend on tyrosine residues in this or the juxtamembrane regions. Instead, the binding maps to serine residue 1283 and requires phosphorylation of this residue. 14-3-3 proteins are phosphoserine-binding proteins which have been shown to interact directly with components of the mitogenic and apoptotic signalling pathways, suggesting that they participate in growth regulation. Our findings suggest that 14-3-3 proteins may play a role in IGFIR signal transduction and may contribute to the differences in IGF and IR signalling capabilities.
doi_str_mv 10.1042/bj3270765
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title 14-3-3 Proteins interact with the insulin-like growth factor receptor but not the insulin receptor1
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