This application is for a Training Program in the Pharmacological Sciences to support nine outstanding Pre-doctoral students who will be working for a Ph.D. degree in Pharmacology, Chemistry, Biology, Biochemistry and Molecular Genetics, Molecular Physiology and Biologic Physics or Microbiology. Their research emphasis will be on scientific problems relevant to the biochemical and physiological effects of drugs and their mechanisms of action. The trainees will be selected from among the students applying directly to the Pharmacology Ph.D. program, students enrolled currently in the interdepartmental Cell and Molecular Biology, Molecular Medicine or Medical Scientist Training programs, and students in the other academic units listed above who are receiving research training in problems of pharmacologic importance. The 26 faculty available to serve as research mentors will be drawn from the Departments listed with emphasis on members of the Pharmacology Department and members of other Departments who are involved in research collaborations with members of the Pharmacology Department. The academic units participating in this program are well equipped to provide state of the art research training in their respective disciplines. In addition, core facilities for advanced technologies, including electron microscopy, hybridoma production, mass spectrometry, macro-molecular x-ray crystallography, cell sorting, confocal imaging and computational support will be available for enhancement of the research training of the participating students. The goal of the Program is to prepare selected individuals for careers in basic research and teaching relevant to problems of pharmacologic importance. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
5T32GM007055-30
Application #
6749543
Study Section
National Institute of General Medical Sciences Initial Review Group (BRT)
Program Officer
Preusch, Peter C
Project Start
1985-07-01
Project End
2008-06-30
Budget Start
2004-07-01
Budget End
2005-06-30
Support Year
30
Fiscal Year
2004
Total Cost
$360,322
Indirect Cost
Name
University of Virginia
Department
Pharmacology
Type
Schools of Medicine
DUNS #
065391526
City
Charlottesville
State
VA
Country
United States
Zip Code
22904
Kerur, Nagaraj; Fukuda, Shinichi; Banerjee, Daipayan et al. (2018) cGAS drives noncanonical-inflammasome activation in age-related macular degeneration. Nat Med 24:50-61
Olmez, Inan; Love, Shawn; Xiao, Aizhen et al. (2018) Targeting the mesenchymal subtype in glioblastoma and other cancers via inhibition of diacylglycerol kinase alpha. Neuro Oncol 20:192-202
Campbell, Sean T; Franks, Caroline E; Borne, Adam L et al. (2018) Chemoproteomic Discovery of a Ritanserin-Targeted Kinase Network Mediating Apoptotic Cell Death of Lung Tumor Cells. Mol Pharmacol 94:1246-1255
Meher, Akshaya K; Spinosa, Michael; Davis, John P et al. (2018) Novel Role of IL (Interleukin)-1? in Neutrophil Extracellular Trap Formation and Abdominal Aortic Aneurysms. Arterioscler Thromb Vasc Biol 38:843-853
Shin, Myungsun; Franks, Caroline E; Hsu, Ku-Lung (2018) Isoform-selective activity-based profiling of ERK signaling. Chem Sci 9:2419-2431
McCloud, Rebecca L; Franks, Caroline E; Campbell, Sean T et al. (2018) Deconstructing Lipid Kinase Inhibitors by Chemical Proteomics. Biochemistry 57:231-236
Serbulea, Vlad; Upchurch, Clint M; Ahern, Katelyn W et al. (2018) Macrophages sensing oxidized DAMPs reprogram their metabolism to support redox homeostasis and inflammation through a TLR2-Syk-ceramide dependent mechanism. Mol Metab 7:23-34
Narahari, Adishesh K; Mehaffey, J Hunter; Hawkins, Robert B et al. (2018) Surgeon Scientists Are Disproportionately Affected by Declining NIH Funding Rates. J Am Coll Surg 226:474-481
Schappe, Michael S; Szteyn, Kalina; Stremska, Marta E et al. (2018) Chanzyme TRPM7 Mediates the Ca2+ Influx Essential for Lipopolysaccharide-Induced Toll-Like Receptor 4 Endocytosis and Macrophage Activation. Immunity 48:59-74.e5
Schweitzer, George G; Collier, Sara L; Chen, Zhouji et al. (2018) Loss of lipin 1-mediated phosphatidic acid phosphohydrolase activity in muscle leads to skeletal myopathy in mice. FASEB J :fj201800361R

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