Involvement of p85 in p53-dependent apoptotic response to oxidative stress (original) (raw)
References
Bagchi, D., Bagchi, M., Hassoun, E. A. & Stohs, S. J. In vitro and in vivo generation of reactive oxygen species, DNA damage and lactate dehydrogenase leakage by selected pesticides. Toxicology104, 129–140 (1995). ArticleCAS Google Scholar
Storz, G., Tartaglia, L. A., Farr, S. B. & Ames, B. N. Bacterial defences against oxidative stress. Trends Genet.6, 363–368 (1990). ArticleCAS Google Scholar
Hockenbery, D. M., Oltvai, Z. N., Yin, X. M., Milliman, C. L. & Korsmeyer, S. J. Bcl-2 functions in an antioxidant pathway to prevent apoptosis. Cell75, 241–251 (1993). ArticleCAS Google Scholar
Korsmeyer, S. J., Yin, X. M., Oltvai, Z. N., Veis Novack, D. J. & Linette, G. P. Reactive oxygen species and the regulation of cell death by the Bcl-2 gene family. Biochim. Biophys. Acta1271, 63–66 (1995). Article Google Scholar
Sundaresan, M., Yu, Z. X., Ferrans, V. J., Irani, K. & Finkel, T. Requirement for generation of H2O2for platelet-derived growth factor signal transduction. Science270, 296–299 (1995). ArticleADSCAS Google Scholar
Hu, P. et al. Interaction of phosphatidylinositol 3-kinase-associated p85 with epidermal growth factor and platelet-derived growth factor receptors. Mol. Cell. Biol.12, 981–990 (1992). ArticleCAS Google Scholar
Carpenter, C. L. & Cantley, L. C. Phosphoinositide kinases. Curr. Opin. Cell Biol.8, 153–158 (1996). ArticleCAS Google Scholar
Pleiman, C. M., Hertz, W. M. & Cambier, J. C. Activation of phosphatidylinositol-3′ kinase by Src-family kinase SH3 binding to the p85 subunit. Science263, 1609–1612 (1994). ArticleADSCAS Google Scholar
Arcaro, A. & Wymann, M. P. Wortmannin is a potent phosphatidylinositol 3-kinase inhibitor: the role of phosphatidylinositol 3,4,5-trisphosphate in neutrophil responses. Biochem. J.296, 297–301 (1993). ArticleCAS Google Scholar
Ferby, I. M., Waga, I., Hoshino, M., Kume, K. & Shimizu, T. Wortmannin inhibits mitogen-activated protein kinase activation by platelet-activating factor through a mechanism independent of p85/p110-type phosphatidylinositol 3-kinase. J. Biol. Chem.271, 11684–11688 (1996). ArticleCAS Google Scholar
Baker, S. J., Markowitz, S., Fearon, E. R., Willson, J. K. & Vogelstein, B. Suppression of human colorectal carcinoma cell growth by wild-type p53. Science249, 912–915 (1990). ArticleADSCAS Google Scholar
Kern, S. E. et al. Oncogenic forms of p53 inhibit p53-regulated gene expression. Science256, 827–830 (1992). ArticleADSCAS Google Scholar
Otsu, M. et al. Characterization of two 85 kd proteins that associate with receptor tyrosine kinases, middle-T/pp60c-src complexes, and PI3-kinase. Cell65, 91–104 (1991). ArticleCAS Google Scholar
Kotani, K., Hara, K., Kotani, K., Yonezawa, K. & Kasuga, M. Phosphoinositide 3-kinase as an upstream regulator of the small GTP-bindign protein Rac in the insulin signaling of membrane ruffling. Biochem. Biophys. Res. Commun.208, 985–990 (1995). ArticleCAS Google Scholar
Kapeller, R. & Cantley, L. C. Phosphatidylinositol 3-kinase. Bioessays16, 565–576 (1994). ArticleCAS Google Scholar
Backer, J. M. et al. Phosphatidylinositol 3′-kinase is activated by association with IRS-1 during insulin stimulation. EMBO J.11, 3469–3479 (1992). ArticleCAS Google Scholar
Carpenter, C. L. & Cantley, L. C. Phosphoinositide 3-kinase and the regulation of cell growth. Biochim. Biophys. Acta1288, 11–16 (1996). Google Scholar
Yao, R. & Cooper, G. M. Requirement for phosphatidylinositol-3 kinase in the prevention of apoptosis by nerve growth factor. Science267, 2003–2006 (1995). ArticleADSCAS Google Scholar
Kauffmann-Zeh, A. et al. Suppression of c-Myc-induced apoptosis by Ras signalling through PI(3)K and PKB. Nature385, 544–548 (1997). ArticleADSCAS Google Scholar
Polyak, K., Xia, Y., Zweier, J. L., Kinzler, K. W. & Vogelstein, B. Amodel for p53-induced apoptosis. Nature389, 300–305 (1997). ArticleADSCAS Google Scholar
Tamemoto, H. et al. Insulin resistance and growth retardation in mice lacking insulin receptor substrate-1. Nature372, 182–186 (1994). ArticleADSCAS Google Scholar
Donehower, L. A. et al. Mice deficient for p53 are developmentally normal but susceptible to spontaneous tumours. Nature356, 215–221 (1992). ArticleADSCAS Google Scholar
El-Deiry, W. S. et al. WAF1, a potential mediator of p53 tumor suppression. Cell75, 817–825 (1993). ArticleCAS Google Scholar
Sambrook, J., Fritsch, E. F. & Maniatis, T. _Molecular Cloning: A Laboratory Manual_2nd edn (Cold Spring Harbor Laboratory Press, NY, (1989)). Google Scholar
Yin, Y., Tainsky, M. A., Bischoff, F. Z., Strong, L. C. & Wahl, G. M. Wild-type p53 restores cell cycle control and inhibits gene amplification in cells with mutant p53 alleles. Cell70, 937–948 (1992). ArticleCAS Google Scholar
Preston, G. A. et al. Induction of apoptosis by c-Fos protein. Mol. Cell. Biol.16, 211–218 (1996). ArticleCAS Google Scholar
Hartley, D., Meisner, H. & Corvera, S. Specific association of the beta isoform of the p85 subunit of phosphatidylinositol-3 kinase with the proto-oncogene c-cbl. J. Biol. Chem.270, 18260–18263 (1995). ArticleCAS Google Scholar