Literature DB >> 21680660

Research resource: New and diverse substrates for the insulin receptor isoform A revealed by quantitative proteomics after stimulation with IGF-II or insulin.

Alaide Morcavallo1, Marco Gaspari, Giuseppe Pandini, Angela Palummo, Giovanni Cuda, Martin R Larsen, Riccardo Vigneri, Antonino Belfiore.   

Abstract

The isoform A of the insulin receptor (IR) (IR-A) is a bifunctional receptor, because it binds both insulin and IGF-II. IR-A activation by IGF-II plays a role in development, but its physiological role in adults is unknown. IGF-II signaling through IR-A is deregulated in cancer and favors tumor progression. We hypothesized that IGF-II binding to the IR-A elicits a unique signaling pathway. In order to obtain an unbiased evaluation of IR-A substrates differentially involved after IGF-II and insulin stimulation, we performed quantitative proteomics of IR-A substrates recruited to tyrosine-phosphorylated protein complexes using stable isotope labeling with amino acids in cell culture in combination with antiphosphotyrosine antibody pull down and mass spectrometry. Using cells expressing only the human IR-A and lacking the IGF-I receptor, we identified 38 IR-A substrates. Only 10 were known IR mediators, whereas 28 substrates were not previously related to IR signaling. Eleven substrates were recruited by stimulation with both ligands: two equally recruited by IGF-II and insulin, three more strongly recruited by IGF-II, and six more strongly recruited by insulin. Moreover, 14 substrates were recruited solely by IGF-II and 13 solely by insulin stimulation. Interestingly, discoidin domain receptors, involved in cell migration and tumor metastasis, and ephrin receptor B4, involved in bidirectional signaling upon cell-cell contact, were predominantly activated by IGF-II. These findings indicate that IR-A activation by IGF-II elicits a unique signaling pathway that may play a distinct role in physiology and in disease.

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Year:  2011        PMID: 21680660      PMCID: PMC5417236          DOI: 10.1210/me.2010-0484

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  61 in total

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4.  Temporal dynamics of tyrosine phosphorylation in insulin signaling.

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  26 in total

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7.  Circulating insulin-like growth factors may contribute substantially to insulin receptor isoform A and insulin receptor isoform B signalling.

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Review 8.  Insulin Receptor Isoforms in Physiology and Disease: An Updated View.

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9.  The insulin receptor: a new target for cancer therapy.

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10.  Insulin-like growth factor-II: new roles for an old actor.

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Journal:  Front Endocrinol (Lausanne)       Date:  2012-10-02       Impact factor: 5.555

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