This proposal requests funding for renewal of an NIH Training Program in Molecular Biophysics (the MBTP) at the University of Wisconsin-Madison. Molecular biophysics takes a quantitative, physical, non- phenomenological approach to biology that is firmly rooted in the principles of condensed-phase physics and physical chemistry. Biophysicists are driven primarily by their curiosity about how biological systems work at the molecular level. They are often responsible for development of state-of-the-art measurements that eventually enhance the capabilities of all biological scientists, including medical researchers. The MBTP trainees are a highly sought cohort of graduate students combining strength in mathematics and physical science with a genuine interest in complex biological systems. Our current trainees have a mean GRE Quantitative score of 778 on a scale of 80. The key elements in the Training Program are core coursework that ensures that all trainees have a firm grounding in physical and biological principles; strong, interdisciplinary research at the forefront of molecular biophysics; coursework and informal training in proper conduct of scientific research; and close interaction with a thesis/mentoring committee that is formed in the second year and maintains a strong connection with the trainee throughout the Ph.D. program. The UW- Madison offers a tremendous range of seminars, poster sessions, and auxiliary coursework that greatly enhance the scientific breadth of our trainees. The MBTP and Biophysics Graduate Degree Program (BGDP) have now operated for seven years under a unified administrative structure. A single Biophysics Steering Committee administers both the MBTP and the BGDP. We are working hard to create a coherent community of biophysics students on the UW-Madison campus. Requirements put in place ensure uniformity of the training experiences of all biophysics students on campus, both MBTP trainees (regardless of home department) and BGDP students. Through a common, weekly Biophysics Seminar class, poster sessions, Biophysics Evenings, all biophysics students share many opportunities to interact with faculty trainers and with each other. By leveraging existing connections with outreach programs already existing on campus and continuing with new stronger initiatives within the program, the MBTP trainers will enhance ongoing efforts to increase participation of underrepresented minority students in both the MBTP and the BGDP. To enforce accountability, any trainer who accepts a new trainee will be required to participate in one meaningful outreach activity each year. In the coming grant period, we also plan to improve self-evaluation of the effectiveness of the MBTP via exit interviews and a periodic survey of former trainees at least five years after their Ph.D.

Public Health Relevance

There have been tremendous advances in the treatment of human disease and health related quality of life issues. At the same time, many challenges remain and the promise held by today's understanding requires well-trained researchers that will drive tomorrow's advances. The goal of the MBTP at the University of Wisconsin-Madison is to provide a training environment that produces young scientists to meet the challenges.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
4T32GM008293-28
Application #
9060153
Study Section
Special Emphasis Panel (ZGM1)
Program Officer
Flicker, Paula F
Project Start
1989-07-01
Project End
2017-06-30
Budget Start
2016-07-01
Budget End
2017-06-30
Support Year
28
Fiscal Year
2016
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Neurosciences
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Hines, Judy P; Dent, Matthew R; Stevens, Daniel J et al. (2018) Site-directed spin label electron paramagnetic resonance spectroscopy as a probe of conformational dynamics in the Fe(III) ""locked-off"" state of the CO-sensing transcription factor CooA. Protein Sci 27:1670-1679
Okuno, Yusuke; Cavagnero, Silvia (2018) Effect of heavy atoms on photochemically induced dynamic nuclear polarization in liquids. J Magn Reson 286:172-187
Stilwell, Matthew D; Cao, Mengyi; Goodrich-Blair, Heidi et al. (2018) Studying the Symbiotic Bacterium Xenorhabdus nematophila in Individual, Living Steinernema carpocapsae Nematodes Using Microfluidic Systems. mSphere 3:
Clawson, Elizabeth D; Blair, Val; Nepper, Julia F et al. (2018) Laboratory Activity Using Accessible Microfluidics to Study Nematode Behavior in an Electrical Field. J Microbiol Biol Educ 19:
Lu, Xiya; Ovchinnikov, Victor; Demapan, Darren et al. (2017) Regulation and Plasticity of Catalysis in Enzymes: Insights from Analysis of Mechanochemical Coupling in Myosin. Biochemistry 56:1482-1497
Walker, Johnnie A; Pattathil, Sivakumar; Bergeman, Lai F et al. (2017) Determination of glycoside hydrolase specificities during hydrolysis of plant cell walls using glycome profiling. Biotechnol Biofuels 10:31
Perlenfein, Tyler J; Murphy, Regina M (2017) A mechanistic model to predict effects of cathepsin B and cystatin C on ?-amyloid aggregation and degradation. J Biol Chem 292:21071-21082
Perlenfein, Tyler J; Mehlhoff, Jacob D; Murphy, Regina M (2017) Insights into the mechanism of cystatin C oligomer and amyloid formation and its interaction with ?-amyloid. J Biol Chem 292:11485-11498
Hernandez, Reinier; Graves, Stephen A; Gregg, Trillian et al. (2017) Radiomanganese PET Detects Changes in Functional ?-Cell Mass in Mouse Models of Diabetes. Diabetes 66:2163-2174
Kreitler, Dale F; Mortenson, David E; Forest, Katrina T et al. (2016) Effects of Single ?-to-? Residue Replacements on Structure and Stability in a Small Protein: Insights from Quasiracemic Crystallization. J Am Chem Soc 138:6498-505

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