This is a competing renewal from an established investigator who has had a long-standing interest in understanding the role of the retinoblastoma (RB) gene in the regulation of cell growth. RB is a tumor suppressor whose expression promotes growth arrest and maintains the long-term survival of terminally differentiated cells. RB, in its underphosphorylated form, in growth-arrested cells, and in early G1, forms complexes with transcription factors that are critical regulators of genes required for G1 progression and S phase entry. These transcription factors are released as cells progress through G1 and RB becomes hyperphosphorylated by cyclin-dependent kinases. The PI proposes to address RB function by studying the complexes that form between RB and specific transcription factors and by examining how these complexes affect the transcriptional regulation of genes critical for G1 to S progression. The three major aims are: 1. To identify and characterize genes regulated by RB-tethered protein complexes, a) by generating mutations in RB that affect the binding domain of specific proteins (such as E2F, LXCXE-containing proteins, and c-abl), and testing their growth suppressive properties in RB-/- cells and mice; b) by isolating genes differentially expressed in RB-/- and +/+ cells and testing their biologic activity in cells; and c) by isolating genes whose transcription regulation depends on the proper binding of proteins to the RB binding sites. 2.To investigate the biological relevance of RB phosphorylation: a) by studying the mechanism by which phosphorylation of Thr821 in the LXCXE-binding domain of RB affects RB interactions with proteins that carry the LXCXE motif and how these interactions, in turn, affect RB's suppressive function; b) by testing the effect of a non-phosphorylatable RB mutant on cell cycle progression. 3.To determine the role of RB in protecting cells from death by using RB mutants.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
2R01CA058320-06
Application #
2008140
Study Section
Cellular Biology and Physiology Subcommittee 1 (CBY)
Project Start
1994-05-03
Project End
2002-02-28
Budget Start
1997-05-01
Budget End
1998-02-28
Support Year
6
Fiscal Year
1997
Total Cost
Indirect Cost
Name
University of California San Diego
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
077758407
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Ludwig, Kirsten; Tse, Edison S; Wang, Jean Yj (2013) Colon cancer cells adopt an invasive phenotype without mesenchymal transition in 3-D but not 2-D culture upon combined stimulation with EGF and crypt growth factors. BMC Cancer 13:221
Han, Jinbo; Soletti, Rossana C; Sadarangani, Anil et al. (2013) Nuclear expression of *-catenin promotes RB stability and resistance to TNF-induced apoptosis in colon cancer cells. Mol Cancer Res 11:207-18
Han, Jinbo; Sridevi, Priya; Ramirez, Michael et al. (2013) ýý-Catenin-dependent lysosomal targeting of internalized tumor necrosis factor-ýý suppresses caspase-8 activation in apoptosis-resistant colon cancer cells. Mol Biol Cell 24:465-73
Spehlmann, Martina E; Manthey, Carolin F; Dann, Sara M et al. (2013) Trp53 deficiency protects against acute intestinal inflammation. J Immunol 191:837-47
Bourgo, Ryan J; Thangavel, Chellappagounder; Ertel, Adam et al. (2011) RB restricts DNA damage-initiated tumorigenesis through an LXCXE-dependent mechanism of transcriptional control. Mol Cell 43:663-72
Zeitlin, Samantha G; Chapados, Brian R; Baker, Norman M et al. (2011) Uracil DNA N-glycosylase promotes assembly of human centromere protein A. PLoS One 6:e17151
Knudsen, Erik S; Wang, Jean Y J (2010) Targeting the RB-pathway in cancer therapy. Clin Cancer Res 16:1094-9
Francis, Sarah M; Bergsied, Jacqueline; Isaac, Christian E et al. (2009) A functional connection between pRB and transforming growth factor beta in growth inhibition and mammary gland development. Mol Cell Biol 29:4455-66
Huang, XiaoDong; Masselli, Anja; Frisch, Steven M et al. (2007) Blockade of tumor necrosis factor-induced Bid cleavage by caspase-resistant Rb. J Biol Chem 282:29401-13
Borges, H L; Hunton, I C; Wang, J Y J (2007) Reduction of apoptosis in Rb-deficient embryos via Abl knockout. Oncogene 26:3868-77

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