Neville Y. Forlemu, Ph.D.
Affiliations: | 2009 | The University of North Dakota, Grand Forks, ND, United States |
Area:
Physical ChemistryGoogle:
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Parents
Sign in to add mentorKathryn A. Thomasson | grad student | 2009 | University of North Dakota | |
(Predicting functional protein complexes in the glycolytic pathway: Computer simulations of compartmentation and channeling in glycolysis.) |
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Publications
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Forlemu N, Watkins P, Sloop J. (2017) Molecular Docking of Selective Binding Affinity of Sulfonamide Derivatives as Potential Antimalarial Agents Targeting the Glycolytic Enzymes: GAPDH, Aldolase and TPI Open Journal of Biophysics. 7: 41-57 |
Uporov IV, Forlemu NY, Nori R, et al. (2015) Introducing DInaMo: A Package for Calculating Protein Circular Dichroism Using Classical Electromagnetic Theory. International Journal of Molecular Sciences. 16: 21237-76 |
Nori R, Uporov IV, Forlemu NY, et al. (2014) Computing Theoretical Circular Dichroism of Proteins using the Dipole Interaction Model (DINAMO) with a United Atom Approach Biophysical Journal. 106: 613 |
Nori R, Uporov IV, Forlemu NY, et al. (2013) Computer Simulations of NAD Channeling between GAPDH and LDH Biophysical Journal. 104: 556a |
Forlemu NY, Njabon EN, Carlson KL, et al. (2011) Ionic strength dependence of F-actin and glycolytic enzyme associations: a Brownian dynamics simulations approach. Proteins. 79: 2813-27 |
Schmidt ES, Forlemu NY, Njabon EN, et al. (2010) BD SIMULATIONS OF THE IONIC STRENGTH DEPENDENCE OF THE INTERACTIONS BETWEEN TRIOSE PHOSPHATE ISOMERASE AND F-ACTIN. Journal of Undergraduate Chemistry Research. 9: 87-96 |
Forlemu NY, Njabon EN, Thomasson KA. (2009) Computer Simulations of Channeling the Coenzyme Nicotinamide Adenine Dinucleotide Between Glycolytic Enzymes Biophysical Journal. 96: 599a |
Thomasson KA, Forlemu NY. (2009) Predictions of Protein Circular Dichroism Calculated by the Dipole Interaction Model and Compared to Synchrotron Radiation Circular Dichroism Experiments Biophysical Journal. 96: 65a |
Forlemu NY, Waingeh VF, Ouporov IV, et al. (2007) Theoretical study of interactions between muscle aldolase and F-actin: insight into different species. Biopolymers. 85: 60-71 |