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Cancer Research|June 15, 1993
Increased protein kinase C alpha expression in human colonic Caco-2 cells after insertion of human Ha-ras or polyoma virus middle T oncogenesS Delage, E Chastre, S Empereur, et al.British Journal of Cancer|August 1, 1996
Syndecan-1 alterations during the tumorigenic progression of human colonic Caco-2 cells induced by human Ha-ras or polyoma middle T oncogenesP Levy, A Munier, S Baron-Delage, et al.Oncogene|April 3, 1997
Down-regulation of NF-kappaB activity and NF-kappaB p65 subunit expression by ras and polyoma middle T oncogenes in human colonic Caco-2 cellsA Cadoret, F Bertrand, S Baron-Delage, et al.Endocrinology|April 1, 1991
Increased insulin action in cultured hepatocytes from rats with diabetes induced by neonatal streptozotocinB Melin, M Caron, G Cherqui, et al.The Journal of Biological Chemistry|October 16, 1999
Insulin antiapoptotic signaling involves insulin activation of the nuclear factor kappaB-dependent survival genes encoding tumor necrosis factor receptor-associated factor 2 and manganese-superoxide dismutaseF Bertrand, C Desbois-Mouthon, A Cadoret, et al.Oncogene|October 21, 1998
Oncogene-induced up-regulation of Caco-2 cell proliferation involves IGF-II gene activation through a protein kinase C-mediated pathwayA Cadoret, S Baron-Delage, F Bertrand, et al.Bulletin Du Cancer|October 1, 1994
[Oncogenic activation of p21(ras) and pp60(c-src) in human colonic Caco-2 cells decreases insulin receptor function and expression through protein kinase C-dependent and independent pathways]S Baron-Delage, V Barbu, F Bertrand, et al.Oncogene|April 21, 2001
Insulin and IGF-1 stimulate the beta-catenin pathway through two signalling cascades involving GSK-3beta inhibition and Ras activationC Desbois-Mouthon, A Cadoret, M J Blivet-Van Eggelpoël, et al.Endocrine|December 15, 2010
Evidence for a role of insulin in hepatocytic differentiation of human hepatoma BC1 cellsS Kang-Park, J Capeau, A Munier, et al.The Journal of Clinical Endocrinology and Metabolism|September 16, 1999
Antiinsulin receptor autoantibodies induce insulin receptors to constitutively associate with insulin receptor substrate-1 and -2 and cause severe cell resistance to both insulin and insulin-like growth factor IM Auclair, C Vigouroux, C Desbois-Mouthon, et al.Pageof 7