The objective of the proposed program is to provide comprehensive predoctoral and postdoctoral training in Molecular and Cell Biology of Cancer. The program is structured to provide trainees not only with in-depth knowledge and research skills in selected areas of cancer biology but also to provide, through formal coursework, seminars, and peer interactions, a broad training base and a sound understanding of the complex issues and problems of cancer. Support is requested for two (2) predoctoral and six (6) postdoctoral trainees (which may include 1 DVM trainee). Predoctoral and DVM training is administered through the mentor's graduate field of the Cornell Graduate School. Trainees are required to take a common core of 8 courses (including a mandatory course on """"""""Ethical Issues & Professional Responsibilities"""""""") and participate in the cancer biology lecture series, the student seminar series, and the annual Cornell Cancer Symposium/Retreat. Additional coursework consists of 2 required elective courses, 2 minicourses in current topics in biochemistry, and 2 courses to satisfy their minor requirements. Thesis research will be carried out in one of the laboratories of the 14 participating preceptors who have primary appointments in the College of Veterinary Medicine, the College of Arts and Sciences, the College of Agriculture and Life Sciences, or the Divisions of Nutritional Sciences. Areas of research range from basic molecular studies in oncogenesis and tumor progression to applied studies in terminal cancer cell differentiation and the development of novel ideas for the diagnosis, treatment, and prevention of cancer. Postdoctoral research will be directed, whenever possible, at collaborative projects between the participating faculty. Trainees including underrepresented minority students selected for the program typically have strong, well-balanced undergraduate (or DVM) backgrounds, research experience in the biological sciences, and career goals in cancer research. Research laboratories available for this program are well equipped and are housed in the College of Veterinary Medicine, the Biotechnology Building, and Savage Hall. Specialized support facilities are provided by the Cornell Biotechnology Program, computer facilities, center for research animal resources (including mouse transgenic facilities), and library system. ? ?

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Institutional National Research Service Award (T32)
Project #
5T32CA009682-13
Application #
6921418
Study Section
Subcommittee G - Education (NCI)
Program Officer
Eckstein, David J
Project Start
1992-08-01
Project End
2008-05-31
Budget Start
2005-08-23
Budget End
2006-05-31
Support Year
13
Fiscal Year
2005
Total Cost
$276,804
Indirect Cost
Name
Cornell University
Department
Other Basic Sciences
Type
Schools of Veterinary Medicine
DUNS #
872612445
City
Ithaca
State
NY
Country
United States
Zip Code
14850
Cox, Reagan G; Livesay, S Brent; Johnson, Monika et al. (2012) The human metapneumovirus fusion protein mediates entry via an interaction with RGD-binding integrins. J Virol 86:12148-60
Paul, Thomas A; Rovnak, Joel; Quackenbush, Sandra L et al. (2011) Transgenic expression of walleye dermal sarcoma virus rv-cyclin (orfA) in zebrafish does not result in tissue proliferation. Mar Biotechnol (NY) 13:142-50
Fenwick, Michael K; Oswald, Robert E (2010) On the mechanisms of alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid (AMPA) receptor binding to glutamate and kainate. J Biol Chem 285:12334-43
Fabre, M V; Beiting, D P; Bliss, S K et al. (2009) Immunity to Trichinella spiralis muscle infection. Vet Parasitol 159:245-8
Ptak, Christopher P; Ahmed, Ahmed H; Oswald, Robert E (2009) Probing the allosteric modulator binding site of GluR2 with thiazide derivatives. Biochemistry 48:8594-602
Fenwick, Michael K; Oswald, Robert E (2008) NMR spectroscopy of the ligand-binding core of ionotropic glutamate receptor 2 bound to 5-substituted willardiine partial agonists. J Mol Biol 378:673-85
Schug, Thaddeus T; Berry, Daniel C; Toshkov, Illia A et al. (2008) Overcoming retinoic acid-resistance of mammary carcinomas by diverting retinoic acid from PPARbeta/delta to RAR. Proc Natl Acad Sci U S A 105:7546-51
Fenwick, Michael K; Oswald, Robert E (2007) Backbone chemical shift assignment of a glutamate receptor ligand binding domain in complexes with five partial agonists. Biomol NMR Assign 1:241-3
Schug, Thaddeus T; Berry, Daniel C; Shaw, Natacha S et al. (2007) Opposing effects of retinoic acid on cell growth result from alternate activation of two different nuclear receptors. Cell 129:723-33
Paul, Thomas A; Quackenbush, Sandra L; Sutton, Claudia et al. (2006) Identification and characterization of an exogenous retrovirus from atlantic salmon swim bladder sarcomas. J Virol 80:2941-8

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