Elizabeth L. Lockamy, Ph.D.

Affiliations: 
2011 Biochemistry, Molecular Bio, and Biophysics University of Minnesota, Twin Cities, Minneapolis, MN 
Area:
General Biophysics, Biochemistry
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"Elizabeth Lockamy"
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David Dale Thomas grad student 2011 UMN
 (Probing Cardiac Calcium Regulation Using Fluorescence Spectroscopy.)
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Publications

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Cornea RL, Gruber SJ, Lockamy EL, et al. (2013) High-throughput FRET assay yields allosteric SERCA activators. Journal of Biomolecular Screening. 18: 97-107
Svensson B, Lockamy EL, Dong D, et al. (2012) Simulations of Fluorescent Probes Attached to SERCA Biophysical Journal. 102: 404a
Lockamy EL, Cornea RL, Karim CB, et al. (2011) Functional and physical competition between phospholamban and its mutants provides insight into the molecular mechanism of gene therapy for heart failure. Biochemical and Biophysical Research Communications. 408: 388-92
Gustavsson M, Traaseth NJ, Karim CB, et al. (2011) Lipid-mediated folding/unfolding of phospholamban as a regulatory mechanism for the sarcoplasmic reticulum Ca2+-ATPase. Journal of Molecular Biology. 408: 755-65
Svensson B, Lockamy EL, Young HS, et al. (2011) Molecular Dynamics Simulations of the IAEDANS Fluorescent Probe Attached to the Sarcoplasmic Reticulum Ca2+-ATpase (serca) Biophysical Journal. 100: 138a
Lockamy EL, Cornea RL, Karim CB, et al. (2011) Probing the Molecular Mechanism of SERCA-PLB Regulation by Time-Resolved FRET Biophysical Journal. 100: 467a
Lockamy EL, Cornea RL, Karim CB, et al. (2010) Probing the Mechanism of SERCA-PLB Regulation by Time-Resolved Fret Biophysical Journal. 98: 170a
Svensson B, Lockamy EL, Young HS, et al. (2010) Conformational Dynamics of a Fluorescent Probe Attached to the Sarcoplasmic Reticulum Ca2+-ATPase (SERCA) Studied by Molecular Simulations Biophysical Journal. 98: 169a
Gruber SJ, Ha KN, Lockamy EL, et al. (2010) Structure-Based Design of Phospholamban Mutants for Gene Therapy Biophysical Journal. 98: 763a
Balog EM, Lockamy EL, Thomas DD, et al. (2009) Site-specific methionine oxidation initiates calmodulin degradation by the 20S proteasome. Biochemistry. 48: 3005-16
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