The crystal structure of the oxidized Trichomonas vaginalis ferredoxin (Tvfd) showed a unique crevice that exposed
the redox center. Here we have examined the dynamics and solvation of the active site of Tvfd using molecular dynamics
simulations of both the reduced and oxidized states. The oxidized simulation stays true to the crystal form with a heavy atom root
mean-squared deviation of 2A° . However, within the reduced simulation of Tvfd a profound loop-cap transition into the redox center
occurred within 6-ns of the start of the simulation and remained open throughout the rest of the 20-ns simulation. This large opening
seen in the simulations supports the hypothesis that the exceptionally fast electron transfer rate between Tvfd and the drug
metronidazole is due to the increased access of the antibiotic to the redox center of the protein and not due to the reduction
potential.
Revised: December 19, 2007 |
Published: May 1, 2007
Citation
Weksberg T.E., G.C. Lynch, K. Krause, and B.M. Pettitt. 2007. "Molecular Dynamics Simulations of Trichomonas vaginalis Ferredoxin
Show a Loop-Cap Transition." Biophysical Journal 92, no. 10:3337-3345. doi:10.1529/biophysj.106.088096