The Department of Biochemistry &Molecular Biology (BMB) and the Department of Chemistry (Chem) at The University of Chicago propose continuation and expansion of an interdisciplinary, predoctoral training program directed at the interface of the chemical and biological sciences. The program emphasizes crosstraining with a synthetic and mechanistic focus. Under the direction of the Principal Investigator in close consultation with a faculty Steering Committee and the co-director/co-principal investigator designated by faculty participants, the program has undergone significant expansion through faculty recruitment and introduction of new courses in interdisciplinary science. Nine faculty members with appointments in BMB, seven in Chem, and one each in the Departments of Pathology and of Neurobiology, Pharmacology, &Physiology form the teaching component of the program. Seven new faculty members have been recruited to the program since its initiation six years ago. Cross-training is achieved by: (1) satisfactory completion of two courses in the department of the other scientific discipline as electives;(2) an elective research rotation under the guidance of a participating faculty member in the other discipline upon initial appointment to the program in the Spring Quarter of the first year of graduate study;(3) coordinated mentoring of student-trainees by the primary research advisor together with a co-advisor of the other department up to the time of the final Ph. D. oral defense;and (4) participation in a series of monthly meetings throughout the academic year designated as """"""""Discussions at the Interface of Chemistry &Biology"""""""" to gain acquaintance with theoretical concepts and methods. The broad scope of the interdisciplinary research interests of the faculty, strengthened through collaborative research projects and interactions, ensures a large variety of opportunities for a meaningful cross-training experience. In contrast to the initial, small nucleus of faculty committed to cross-disciplinary research and teaching six years ago, the program presently enjoys broad faculty support and offers a supportive environment for training of students in cutting-edge research at the interface of chemistry and biology. This will be significantly enhanced through relocation of the laboratories of all participating BMB and Chem faculty into the new Institute for Interdivisional Research over the next 10-month period.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
5T32GM008720-09
Application #
7646141
Study Section
Special Emphasis Panel (ZGM1-BRT-3 (01))
Program Officer
Fabian, Miles
Project Start
1999-07-01
Project End
2011-06-30
Budget Start
2009-07-01
Budget End
2010-06-30
Support Year
9
Fiscal Year
2009
Total Cost
$217,570
Indirect Cost
Name
University of Chicago
Department
Biochemistry
Type
Schools of Medicine
DUNS #
005421136
City
Chicago
State
IL
Country
United States
Zip Code
60637
Ni, Kaiyuan; Lan, Guangxu; Chan, Christina et al. (2018) Nanoscale metal-organic frameworks enhance radiotherapy to potentiate checkpoint blockade immunotherapy. Nat Commun 9:2351
Richter, Uwe; Evans, Molly E; Clark, Wesley C et al. (2018) RNA modification landscape of the human mitochondrial tRNALys regulates protein synthesis. Nat Commun 9:3966
Yang, Hao; Swartz, Alan M; Park, Hyun June et al. (2018) Evolving artificial metalloenzymes via random mutagenesis. Nat Chem 10:318-324
Wang, Zongan; Jumper, John M; Wang, Sheng et al. (2018) A Membrane Burial Potential with H-Bonds and Applications to Curved Membranes and Fast Simulations. Biophys J 115:1872-1884
Payne, James T; Butkovich, Paul H; Gu, Yifan et al. (2018) Enantioselective Desymmetrization of Methylenedianilines via Enzyme-Catalyzed Remote Halogenation. J Am Chem Soc 140:546-549
Riback, Joshua A; Bowman, Micayla A; Zmyslowski, Adam et al. (2018) Response to Comment on ""Innovative scattering analysis shows that hydrophobic disordered proteins are expanded in water"". Science 361:
Andorfer, Mary C; Lewis, Jared C (2018) Understanding and Improving the Activity of Flavin-Dependent Halogenases via Random and Targeted Mutagenesis. Annu Rev Biochem 87:159-185
Andorfer, Mary C; Grob, Jonathan E; Hajdin, Christine E et al. (2017) Understanding Flavin-Dependent Halogenase Reactivity via Substrate Activity Profiling. ACS Catal 7:1897-1904
Li, Gang; Montgomery, Jeffrey E; Eckert, Mark A et al. (2017) An activity-dependent proximity ligation platform for spatially resolved quantification of active enzymes in single cells. Nat Commun 8:1775
Pu, Jinyue; Zinkus-Boltz, Julia; Dickinson, Bryan C (2017) Evolution of a split RNA polymerase as a versatile biosensor platform. Nat Chem Biol 13:432-438

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