Ultraviolet (UV) light is a complete carcinogen that can induce skin cancer. Among many effects, UV irradiation rapidly induces activation of the c-Jun NH2-terminal protein kinase (JNK) in mammalian cells and causes cell apoptosis. However, the molecular mechanism for JNK activation by UV exposure is poorly understood. We have found that the multisubstrate adapter Gab1 plays an essential role in the signaling cascade that is upregulated by UV irradiation. Gab1-deficient fibroblast cells are defective in the induction of JNK activity by UV light, and this defect is rescued by re-introduction of Gab1. We have also found that Gab1 is constitutively associated with JNK, and that UV irradiation of cells induces tyrosine phosphorylation of Gab 1. Although preliminary data suggest a possible role for the hepatocyte growth factor (HGF) receptor c-Met, the upstream kinase(s) that phosphorylates Gab 1 in response to UV remains to be unequivocally identified. We hypothesize that Gab1, a scaffold protein without catalytic activity, orchestrates a unique combination of enzymes and signaling proteins in the cellular responses to UV exposure, which represents a novel and unexplored signaling pathway. We will take a multidisciplinary approach to elucidate the molecular mechanism for Gab 1 activity in cellular responses to UV exposure.
Our specific aims are: 1) to define the signaling events upstream of Gab1 in UV-irradiated cells; 2) to dissect the biochemical machinery linking Gabl with JNK; 3) to examine the role of Gab1 in the cellular responses to UV light; and 4) to determine the role of Gab1 in the development of UV-induced skin cancer in mice. The long term goal of this work is to identify targets for pharmaceutical intervention to block pathological processes elicited by UV light.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program Projects (P01)
Project #
5P01CA102583-05
Application #
7683131
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2008-09-01
Budget End
2009-08-31
Support Year
5
Fiscal Year
2008
Total Cost
$422,340
Indirect Cost
Name
Sanford-Burnham Medical Research Institute
Department
Type
DUNS #
020520466
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Feng, Haizhong; Hu, Bo; Jarzynka, Michael J et al. (2012) Phosphorylation of dedicator of cytokinesis 1 (Dock180) at tyrosine residue Y722 by Src family kinases mediates EGFRvIII-driven glioblastoma tumorigenesis. Proc Natl Acad Sci U S A 109:3018-23
Feng, Haizhong; Hu, Bo; Liu, Kun-Wei et al. (2011) Activation of Rac1 by Src-dependent phosphorylation of Dock180(Y1811) mediates PDGFR?-stimulated glioma tumorigenesis in mice and humans. J Clin Invest 121:4670-84
Mace, Peter D; Wallez, Yann; Dobaczewska, Ma?gorzata K et al. (2011) NSP-Cas protein structures reveal a promiscuous interaction module in cell signaling. Nat Struct Mol Biol 18:1381-7
Múnera, Jorge; Ceceña, Grace; Jedlicka, Paul et al. (2011) Ets2 regulates colonic stem cells and sensitivity to tumorigenesis. Stem Cells 29:430-9
Browne, Cecille D; Hoefer, Melanie M; Chintalapati, Suresh K et al. (2010) SHEP1 partners with CasL to promote marginal zone B-cell maturation. Proc Natl Acad Sci U S A 107:18944-9
Murai, Keith K; Pasquale, Elena B (2010) Restraining stem cell niche plasticity: a new talent of Eph receptors. Cell Stem Cell 7:647-8
Roselli, Séverine; Wallez, Yann; Wang, Lei et al. (2010) The SH2 domain protein Shep1 regulates the in vivo signaling function of the scaffolding protein Cas. Cell Signal 22:1745-52
Pasquale, Elena B (2010) Eph receptors and ephrins in cancer: bidirectional signalling and beyond. Nat Rev Cancer 10:165-80
Wang, Lei; Vervoort, Virginie; Wallez, Yann et al. (2010) The SRC homology 2 domain protein Shep1 plays an important role in the penetration of olfactory sensory axons into the forebrain. J Neurosci 30:13201-10
Leone, Marilisa; Cellitti, Jason; Pellecchia, Maurizio (2009) The Sam domain of the lipid phosphatase Ship2 adopts a common model to interact with Arap3-Sam and EphA2-Sam. BMC Struct Biol 9:59

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