Distinct signalling properties of insulin receptor substrate (IRS)-1 and IRS-2 in mediating insulin/IGF-1 action.
| Citation | Rabiee, Atefeh, et al. “Distinct Signalling Properties of Insulin Receptor Substrate (IRS)-1 and IRS-2 in Mediating Insulin IGF-1 Action”. 2018. Cellular Signalling, vol. 47, 2018, pp. 1–15.  | 
       
| Center | Joslin Diabetes Center | 
| Author | Atefeh Rabiee, Marcus Krüger, Jacob Ardenkjær-Larsen, Ronald Kahn, Brice Emanuelli | 
| Keywords | Insulin receptor substrate, Insulin/IGF-1, Kinase, Phosphoproteomics, signal transduction | 
| Abstract | 
   Insulin/IGF-1 action is driven by a complex and highly integrated signalling network. Loss-of-function studies indicate that the major insulin/IGF-1 receptor substrate (IRS) proteins, IRS-1 and IRS-2, mediate different biological functions in vitro and in vivo, suggesting specific signalling properties despite their high degree of homology. To identify mechanisms contributing to the differential signalling properties of IRS-1 and IRS-2 in the mediation of insulin/IGF-1 action, we performed comprehensive mass spectrometry (MS)-based phosphoproteomic profiling of brown preadipocytes from wild type, IRS-1 and IRS-2 mice in the basal and IGF-1-stimulated states. We applied stable isotope labeling by amino acids in cell culture (SILAC) for the accurate quantitation of changes in protein phosphorylation. We found ~10% of the 6262 unique phosphorylation sites detected to be regulated by IGF-1. These regulated sites included previously reported substrates of the insulin/IGF-1 signalling pathway, as well as novel substrates including Nuclear Factor I X and Semaphorin-4B. In silico prediction suggests the protein kinase B (PKB), protein kinase C (PKC), and cyclin-dependent kinase (CDK) as the main mediators of these phosphorylation events. Importantly, we found preferential phosphorylation patterns depending on the presence of either IRS-1 or IRS-2, which was associated with specific sets of kinases involved in signal transduction downstream of these substrates such as PDHK1, MAPK3, and PKD1 for IRS-1, and PIN1 and PKC beta for IRS-2. Overall, by generating a comprehensive phosphoproteomic profile from brown preadipocyte cells in response to IGF-1 stimulation, we reveal both common and distinct insulin/IGF-1 signalling events mediated by specific IRS proteins.  | 
        
| Year of Publication | 
   2018 
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| Journal | 
   Cellular signalling 
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| Volume | 
   47 
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| Number of Pages | 
   1-15 
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| Date Published | 
   07/2018 
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| ISSN Number | 
   1873-3913 
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| DOI | 
   10.1016/j.cellsig.2018.03.003 
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| Alternate Journal | 
   Cell. Signal. 
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| PMCID | 
   PMC5951756 
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| PMID | 
   29550500 
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