Homology modeling and molecular dynamics simulation studies of a marine alkaline protease

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Abstract

A cold-adapted marine alkaline protease (MP, accession no. ACY25898) was produced by a marine bacterium strain, which was isolated from Yellow Sea sediment in China. Many previous researches showed that this protease had potential application as a detergent additive. It was therefore crucial to determine the tertiary structure of MP. In this study, a homology model of MP was constructed using the multiple templates alignment method. The tools PROCHECK, ERRAT, and Verify_3D were used to check the effectiveness of the model. The result showed that 94% of residues were found in the most favored allowed regions, 6% were in the additional allowed region, and 96.50% of the residues had average 3D-1D scores of no less than 0.2. Meanwhile, the overall quality factor (ERRAT) of our model was 80.657. In this study, we also focused on elucidating the molecular mechanism of the two "fap" motions. Based on the optimized model, molecular-dynamics simulations in explicit solvent environments were carried out by using the AMBER11 package, for the entire protein, in order to characterize the dynamical behavior of the two faps. Our results showed an open motion of the two faps in the water solvent. This research may facilitate inhibitor virtual screening for MP and may also lay the foundationknowledge of mechanism of the inhibitors. © the author(s), publisher and licensee Libertas Academica Ltd.

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Ji, X., Wang, W., Zheng, Y., Hao, J., & Sun, M. (2012). Homology modeling and molecular dynamics simulation studies of a marine alkaline protease. Bioinformatics and Biology Insights, 6, 255–263. https://doi.org/10.4137/BBI.S10663

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