This revised proposal describes plans by sixteen Cornell faculty members to establish a vigorous chemistry-biology interface predoctoral training program which is designed to produce scientists having thorough training in several aspects of """"""""pure"""""""" chemistry as well as in scientific disciplines such as structural and bioorganic chemistry, drug design, enzymology and molecular biology (to name just a few) which lie at the interface of chemistry and biology. The proposed project focuses sharply on three main features of the chemistry of biological systems: design, assembly and analysis. The purpose of the plan described herein is to help trainees develop beyond the scope of a typical graduate program in chemistry. In addition to having strong undergraduate training in chemistry, the sixteen students selected for support will further advance their interdisciplinary training by planning their graduate academic work around a core curriculum of courses in areas spanning both chemical and biological disciplines. Moreover each will be completely free to carry out his or her doctoral thesis research in one or more of the laboratories of the sixteen participating faculty. All participating faculty have strong research programs in various aspects of chemistry, which are well-funded by the National Institutes of Health. Nine participating faculty have primary academic appointments in the Department of Chemistry, and five of these chemists are elected members of the field of biochemistry. The overall research interests of participating faculty are broadly distributed over areas of synthetic organic, bioorganic, biophysical and polymer chemistry, as well as such fields as x-ray crystallography, nmr spectroscopy, protein structure and function, enzymology and immunology. While individual research groups are extremely well-equipped to conduct the proposed research, Cornell University maintains a large number of diverse instrument facilities and dedicated research centers which are available to all trainees, Besides attending weekly seminars on relevant topics within the Field of Chemistry and the Division of Biological Sciences at Cornell, trainees will participate in a special interdisciplinary seminar program, with monthly meetings during the academic year when both students and faculty present their work. Trainees will also be exposed to industrial research through internships with interested industrial affiliates as well as through campus seminars and visits by industrial scientists. Thesis research and collaborations in the laboratories of the sixteen participating faculty members prepare trainees for careers in multidisciplinary research at the interface of chemistry and biology.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
5T32GM008500-05
Application #
6150909
Study Section
Special Emphasis Panel (ZGM1-CBI-5)
Program Officer
Rogers, Michael E
Project Start
1996-07-01
Project End
2001-06-30
Budget Start
2000-07-01
Budget End
2001-06-30
Support Year
5
Fiscal Year
2000
Total Cost
$207,794
Indirect Cost
Name
Cornell University
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
City
Ithaca
State
NY
Country
United States
Zip Code
14850
Spraker, Joseph E; Wiemann, Philipp; Baccile, Joshua A et al. (2018) Conserved Responses in a War of Small Molecules between a Plant-Pathogenic Bacterium and Fungi. MBio 9:
Parvez, Saba; Long, Marcus J C; Poganik, Jesse R et al. (2018) Redox Signaling by Reactive Electrophiles and Oxidants. Chem Rev 118:8798-8888
Khalid, Saima; Baccile, Joshua A; Spraker, Joseph E et al. (2018) NRPS-Derived Isoquinolines and Lipopetides Mediate Antagonism between Plant Pathogenic Fungi and Bacteria. ACS Chem Biol 13:171-179
O'Neill, Erinn M; Mucyn, Tatiana S; Patteson, Jon B et al. (2018) Phevamine A, a small molecule that suppresses plant immune responses. Proc Natl Acad Sci U S A 115:E9514-E9522
Long, Marcus J C; Urul, Daniel A; Chawla, Shivansh et al. (2018) Precision Electrophile Tagging in Caenorhabditis elegans. Biochemistry 57:216-220
Falcke, Jan M; Bose, Neelanjan; Artyukhin, Alexander B et al. (2018) Linking Genomic and Metabolomic Natural Variation Uncovers Nematode Pheromone Biosynthesis. Cell Chem Biol 25:787-796.e12
Poganik, Jesse R; Aye, Yimon (2018) Weighing up the Selenocysteome Uncovers New Sec-rets. Cell Chem Biol 25:1315-1317
O'Donnell, John P; Byrnes, Laura J; Cooley, Richard B et al. (2018) A hereditary spastic paraplegia-associated atlastin variant exhibits defective allosteric coupling in the catalytic core. J Biol Chem 293:687-700
Lim, Fang Yun; Won, Tae Hyung; Raffa, Nicholas et al. (2018) Fungal Isocyanide Synthases and Xanthocillin Biosynthesis in Aspergillus fumigatus. MBio 9:
Lynch, Michael J; Levenson, Robert; Kim, Eun A et al. (2017) Co-Folding of a FliF-FliG Split Domain Forms the Basis of the MS:C Ring Interface within the Bacterial Flagellar Motor. Structure 25:317-328

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