A group of muscle biology researchers at the University of Minnesota proposes to establish an interdisciplinary training program for predoctoral and postdoctoral scientists. The training group consists of 14 faculty from 8 departments in the Academic Health Center. Based on seed money from the University over the past three years, these researchers, who are based in both basic science and clinical departments, have already begun working closely together to develop this program. Primary emphasis is placed on training scientists to use the most powerful methods in basic science research, applied to problems in the molecular physiology and pathology of muscle. Graduate students will be trained in one of two graduate programs, (1) Biochemistry, Molecular Biology, and Biophysics and (2) Neuroscience. The academic focus of the program, for both predoctoral and postdoctoral trainees, will be a 1-semester course entitled Muscle, which has been recently developed and taught by the training faculty and is cross-listed in both graduate programs. This course, like the rest of the training program, seeks to balance rigorous basic research with exciting clinical applications. The program will focus on six key muscle research themes in which Minnesota plays a leading role: (1) contractile proteins, (2) calcium regulation and malignant hyperthemia, (3) aging, (4) genetics of muscle membrane disorders, (5) ocular muscles, and (6) metabolism. Trainees will be encouraged to interact with both basic and clinical researchers, and to study both normal and diseased muscle. Recognizing the synergy produced by groups of researchers at different levels of training, support will be provided for both predoctoral and postdoctoral researchers. After a gradual startup period of two years, the program will support 6 predoctoral and 4 postdoctoral trainees each year. Program faculty will work closely with the two graduate programs to recruit outstanding students and postdocs who are attracted by the challenging array of interdisciplinary training opportunities in muscle research. The primary goal of the program is to help these exceptional young scientists develop the intellectual and technical tools needed for productive careers as independent investigators and educators in muscle research.

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Type
Institutional National Research Service Award (T32)
Project #
1T32AR007612-01
Application #
6313848
Study Section
Arthritis and Musculoskeletal and Skin Diseases Special Grants Review Committee (AMS)
Program Officer
Lymn, Richard W
Project Start
2001-05-01
Project End
2006-04-30
Budget Start
2001-05-01
Budget End
2002-04-30
Support Year
1
Fiscal Year
2001
Total Cost
$155,516
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Biochemistry
Type
Schools of Medicine
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Martin, Peter D; James, Zachary M; Thomas, David D (2018) Effect of Phosphorylation on Interactions between Transmembrane Domains of SERCA and Phospholamban. Biophys J 114:2573-2583
Fealey, Michael E; Horn, Benjamin; Coffman, Christian et al. (2018) Dynamics of Dystrophin's Actin-Binding Domain. Biophys J 115:445-454
Hennen, Jared; Saunders, Cosmo A; Mueller, Joachim D et al. (2018) Fluorescence fluctuation spectroscopy reveals differential SUN protein oligomerization in living cells. Mol Biol Cell 29:1003-1011
Fealey, Michael E; Binder, Benjamin P; Uversky, Vladimir N et al. (2018) Structural Impact of Phosphorylation and Dielectric Constant Variation on Synaptotagmin's IDR. Biophys J 114:550-561
Cabelka, Christine A; Baumann, Cory W; Collins, Brittany C et al. (2018) Effects of ovarian hormones and estrogen receptor ? on physical activity and skeletal muscle fatigue in female mice. Exp Gerontol :
Stroik, Daniel R; Yuen, Samantha L; Janicek, Kevyn A et al. (2018) Targeting protein-protein interactions for therapeutic discovery via FRET-based high-throughput screening in living cells. Sci Rep 8:12560
Her, Cheng; Thompson, Andrew R; Karim, Christine B et al. (2018) Structural dynamics of calmodulin-ryanodine receptor interactions: electron paramagnetic resonance using stereospecific spin labels. Sci Rep 8:10681
Hennen, Jared; Angert, Isaac; Hur, Kwang-Ho et al. (2018) Investigating LINC Complex Protein Homo-oligomerization in the Nuclear Envelopes of Living Cells Using Fluorescence Fluctuation Spectroscopy. Methods Mol Biol 1840:121-135
Cain, Natalie E; Jahed, Zeinab; Schoenhofen, Amy et al. (2018) Conserved SUN-KASH Interfaces Mediate LINC Complex-Dependent Nuclear Movement and Positioning. Curr Biol 28:3086-3097.e4
Saunders, Cosmo A; Harris, Nathan J; Willey, Patrick T et al. (2017) TorsinA controls TAN line assembly and the retrograde flow of dorsal perinuclear actin cables during rearward nuclear movement. J Cell Biol 216:657-674

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