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157 related items for PubMed ID: 12213821

  • 1. In vivo regulation of phosphoinositide 3-kinase in retina through light-induced tyrosine phosphorylation of the insulin receptor beta-subunit.
    Rajala RV, McClellan ME, Ash JD, Anderson RE.
    J Biol Chem; 2002 Nov 08; 277(45):43319-26. PubMed ID: 12213821
    [Abstract] [Full Text] [Related]

  • 2. Interaction of the insulin receptor beta-subunit with phosphatidylinositol 3-kinase in bovine ROS.
    Rajala RV, Anderson RE.
    Invest Ophthalmol Vis Sci; 2001 Dec 08; 42(13):3110-7. PubMed ID: 11726610
    [Abstract] [Full Text] [Related]

  • 3. Interaction of the retinal insulin receptor beta-subunit with the p85 subunit of phosphoinositide 3-kinase.
    Rajala RV, McClellan ME, Chan MD, Tsiokas L, Anderson RE.
    Biochemistry; 2004 May 18; 43(19):5637-50. PubMed ID: 15134438
    [Abstract] [Full Text] [Related]

  • 4. Insulin growth factor 1 receptor/PI3K/AKT survival pathway in outer segment membranes of rod photoreceptors.
    Dilly AK, Rajala RV.
    Invest Ophthalmol Vis Sci; 2008 Nov 18; 49(11):4765-73. PubMed ID: 18566464
    [Abstract] [Full Text] [Related]

  • 5. Light regulation of the insulin receptor in the retina.
    Rajala RV, Anderson RE.
    Mol Neurobiol; 2003 Oct 18; 28(2):123-38. PubMed ID: 14576451
    [Abstract] [Full Text] [Related]

  • 6. Involvement of insulin/phosphoinositide 3-kinase/Akt signal pathway in 17 beta-estradiol-mediated neuroprotection.
    Yu X, Rajala RV, McGinnis JF, Li F, Anderson RE, Yan X, Li S, Elias RV, Knapp RR, Zhou X, Cao W.
    J Biol Chem; 2004 Mar 26; 279(13):13086-94. PubMed ID: 14711819
    [Abstract] [Full Text] [Related]

  • 7. Identification of a NPXY motif in growth factor receptor-bound protein 14 (Grb14) and its interaction with the phosphotyrosine-binding (PTB) domain of IRS-1.
    Rajala RV, Chan MD.
    Biochemistry; 2005 Jun 07; 44(22):7929-35. PubMed ID: 15924411
    [Abstract] [Full Text] [Related]

  • 8. Light-dependent association of Src with photoreceptor rod outer segment membrane proteins in vivo.
    Ghalayini AJ, Desai N, Smith KR, Holbrook RM, Elliott MH, Kawakatsu H.
    J Biol Chem; 2002 Jan 11; 277(2):1469-76. PubMed ID: 11705988
    [Abstract] [Full Text] [Related]

  • 9. A 60-kilodalton protein in rat hepatoma cells overexpressing insulin receptor was tyrosine phosphorylated and associated with Syp, phophatidylinositol 3-kinase, and Grb2 in an insulin-dependent manner.
    Zhang-Sun G, Yang C, Viallet J, Feng G, Bergeron JJ, Posner BI.
    Endocrinology; 1996 Jul 11; 137(7):2649-58. PubMed ID: 8770882
    [Abstract] [Full Text] [Related]

  • 10. G-protein-coupled receptor rhodopsin regulates the phosphorylation of retinal insulin receptor.
    Rajala A, Anderson RE, Ma JX, Lem J, Al-Ubaidi MR, Rajala RVS.
    J Biol Chem; 2007 Mar 30; 282(13):9865-9873. PubMed ID: 17272282
    [Abstract] [Full Text] [Related]

  • 11. Insulin receptor substrate-1 enhances growth hormone-induced proliferation.
    Liang L, Zhou T, Jiang J, Pierce JH, Gustafson TA, Frank SJ.
    Endocrinology; 1999 May 30; 140(5):1972-83. PubMed ID: 10218944
    [Abstract] [Full Text] [Related]

  • 12. Tyrosine phosphorylation is involved in phosphatidylinositol 3-kinase activation in bovine rod outer segments.
    Guo XX, Huang Z, Bell MW, Chen H, Anderson RE.
    Mol Vis; 2000 Nov 04; 6():216-21. PubMed ID: 11063755
    [Abstract] [Full Text] [Related]

  • 13. In vitro association of the phosphatidylinositol 3-kinase regulatory subunit (p85) with the human insulin receptor.
    Ottinger EA, Hui TY, Man Z, Barany G, Bernlohr DA.
    Int J Pept Protein Res; 1995 Nov 04; 46(5):346-53. PubMed ID: 8567177
    [Abstract] [Full Text] [Related]

  • 14. Regulation of type II phosphatidylinositol phosphate kinase by tyrosine phosphorylation in bovine rod outer segments.
    Huang Z, Guo XX, Chen SX, Alvarez KM, Bell MW, Anderson RE.
    Biochemistry; 2001 Apr 17; 40(15):4550-9. PubMed ID: 11294622
    [Abstract] [Full Text] [Related]

  • 15. Insulin treatment stimulates the tyrosine phosphorylation of the alpha-type 85-kDa subunit of phosphatidylinositol 3-kinase in vivo.
    Hayashi H, Kamohara S, Nishioka Y, Kanai F, Miyake N, Fukui Y, Shibasaki F, Takenawa T, Ebina Y.
    J Biol Chem; 1992 Nov 05; 267(31):22575-80. PubMed ID: 1385401
    [Abstract] [Full Text] [Related]

  • 16. Tyrosine phosphorylation of the alpha subunit of transducin and its association with Src in photoreceptor rod outer segments.
    Bell MW, Desai N, Guo XX, Ghalayini AJ.
    J Neurochem; 2000 Nov 05; 75(5):2006-19. PubMed ID: 11032890
    [Abstract] [Full Text] [Related]

  • 17. Reciprocal feedback regulation of insulin receptor and insulin receptor substrate tyrosine phosphorylation by phosphoinositide 3-kinase in primary adipocytes.
    Hers I, Bell CJ, Poole AW, Jiang D, Denton RM, Schaefer E, Tavaré JM.
    Biochem J; 2002 Dec 15; 368(Pt 3):875-84. PubMed ID: 12220227
    [Abstract] [Full Text] [Related]

  • 18. Src family kinases mediate receptor-stimulated, phosphoinositide 3-kinase-dependent, tyrosine phosphorylation of dual adaptor for phosphotyrosine and 3-phosphoinositides-1 in endothelial and B cell lines.
    Stephens LR, Anderson KE, Hawkins PT.
    J Biol Chem; 2001 Nov 16; 276(46):42767-73. PubMed ID: 11524430
    [Abstract] [Full Text] [Related]

  • 19. Light activation of the insulin receptor regulates mitochondrial hexokinase. A possible mechanism of retinal neuroprotection.
    Rajala A, Gupta VK, Anderson RE, Rajala RV.
    Mitochondrion; 2013 Nov 16; 13(6):566-76. PubMed ID: 23993956
    [Abstract] [Full Text] [Related]

  • 20. Involvement of phosphoinositide 3-kinase and its association with pp60src in cholecystokinin-stimulated pancreatic acinar cells.
    Nozu F, Owyang C, Tsunoda Y.
    Eur J Cell Biol; 2000 Nov 16; 79(11):803-9. PubMed ID: 11139143
    [Abstract] [Full Text] [Related]


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