The Cell Cycling and Signaling Program has continued to evolve and has now expanded to include active programs in epigenetics, stem cell biology and tumor microenvironment. This interdisciplinary Program focuses on the regulation of cell signaling and cell cycle control and how alterations in these processes modulate gene expression, cause mutations, and fuel multistep carcinogenesis. The cell cycle is the collection of biochemical networks whereby one cell gives rise to two. This entails the coordination of three fundamental programs: cell growth, cell metabolism and cell division. Cell division, the increase in cell number, encompasses the proper replication and segregation of the genetic material to two daughter cells. Cell growth, the increase in cell mass and components, must be coordinated with division to ensure proper cell size, function, and position. Superimposed on both of these fundamental programs is the differentiated status of the cell, ranging from stem cell to terminal differentiation. Program Members study regulated entry into the cell cycle, which include proper molecular controls, mechanisms for ensuring the fidelity of the processes, and responses to exogenous signals for growth and differentiation. Members also study exit from the cell cycle of both the reversible kind (checkpoint control, differentiation) and the irreversible kind (senescence and death). Although core components of the cell cycle machinery are common to all eukaryotic cells, the strategy of regulation is often specific to the organism, the tissue, the cell, or the physiological/differentiated state. Multiple aspects of these processes are often controlled by nuclear organization (both genetic and epigenetic) and by signals from the extra-cellular matrix (tumor microenvironment). Observations resulting from basic research in these fundamental processes are applied to clinical questions of diagnosis, prognosis, and prevention of disease and will ultimately translate into the design of better preventive and therapeutic strategies. This Program interacts with several organ specific programs for the purpose of applying these fundamental processes to specific neoplasias. Many Members also belong to organ-specific Programs to facilitate exchange. The Program has $18,544,836 Total peer reviewed support for the last budget year. The Program has 10% intra-programmatic and 25% interprogrammatic publications.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA082103-12
Application #
8133053
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2010-06-01
Budget End
2011-05-31
Support Year
12
Fiscal Year
2010
Total Cost
$70,562
Indirect Cost
Name
University of California San Francisco
Department
Type
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
An, Zhenyi; Aksoy, Ozlem; Zheng, Tina et al. (2018) Epidermal growth factor receptor and EGFRvIII in glioblastoma: signaling pathways and targeted therapies. Oncogene 37:1561-1575
Behr, Spencer C; Villanueva-Meyer, Javier E; Li, Yan et al. (2018) Targeting iron metabolism in high-grade glioma with 68Ga-citrate PET/MR. JCI Insight 3:
Rubenstein, James L; Geng, Huimin; Fraser, Eleanor J et al. (2018) Phase 1 investigation of lenalidomide/rituximab plus outcomes of lenalidomide maintenance in relapsed CNS lymphoma. Blood Adv 2:1595-1607
An, Zhenyi; Knobbe-Thomsen, Christiane B; Wan, Xiaohua et al. (2018) EGFR Cooperates with EGFRvIII to Recruit Macrophages in Glioblastoma. Cancer Res 78:6785-6794
Olshen, Adam; Wolf, Denise; Jones, Ella F et al. (2018) Features of MRI stromal enhancement with neoadjuvant chemotherapy: a subgroup analysis of the ACRIN 6657/I-SPY TRIAL. J Med Imaging (Bellingham) 5:011014
Li, Megan; Kroetz, Deanna L (2018) Bevacizumab-induced hypertension: Clinical presentation and molecular understanding. Pharmacol Ther 182:152-160
Brunner, Katja; John, Constance M; Phillips, Nancy J et al. (2018) Novel Campylobacter concisus lipooligosaccharide is a determinant of inflammatory potential and virulence. J Lipid Res 59:1893-1905
Felix, Janine F; Joubert, Bonnie R; Baccarelli, Andrea A et al. (2018) Cohort Profile: Pregnancy And Childhood Epigenetics (PACE) Consortium. Int J Epidemiol 47:22-23u
Cobler, Lara; Zhang, Hui; Suri, Poojan et al. (2018) xCT inhibition sensitizes tumors to ?-radiation via glutathione reduction. Oncotarget 9:32280-32297
Li, Megan; Mulkey, Flora; Jiang, Chen et al. (2018) Identification of a Genomic Region between SLC29A1 and HSP90AB1 Associated with Risk of Bevacizumab-Induced Hypertension: CALGB 80405 (Alliance). Clin Cancer Res 24:4734-4744

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