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      Structures and dynamics of peptide and peptidomimetic inhibitors bound to the NS2B-NS3 protease of the ZIKA virus

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          Most cited references35

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          Constant pressure molecular dynamics algorithms

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            OPLS4: Improving Force Field Accuracy on Challenging Regimes of Chemical Space.

            We report on the development and validation of the OPLS4 force field. OPLS4 builds upon our previous work with OPLS3e to improve model accuracy on challenging regimes of drug-like chemical space that includes molecular ions and sulfur-containing moieties. A novel parametrization strategy for charged species, which can be extended to other systems, is introduced. OPLS4 leads to improved accuracy on benchmarks that assess small-molecule solvation and protein-ligand binding.
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              Structural properties of water: comparison of the SPC, SPCE, TIP4P, and TIP5P models of water.

              Molecular-dynamics simulations were carried out for the SPC, SPCE, TIP4P, and TIP5P models of water at 298 K. From these results we determine the following quantities: the absolute entropy using the two-particle approximation, the mean lifetime of the hydrogen bond, the mean number of hydrogen bonds per molecule, and the mean energy of the hydrogen bond. From the entropy calculations we find that nearly all contributions to the total entropy originates from the orientation effects. Moreover, we determine the contributions to the total entropy which originate from the first, second, and higher solvation shells. It is interesting that the limits between solvation shells are clearly visible. The first solvation shell (0.22 < r < 0.36 nm) contributes approximately 43 J mol K to the total entropy; the second solvation shell (0.36 < r < 0.60 nm) contributes approximately 12 J mol K, while contributions from the third and other solvation shells are very small, approximately 2 J mol K in summary. This indicates that water molecules are strongly ordered up to 0.55-0.6 nm around the central water molecule, and beyond this limit the ordering diminishes. The results of calculations (entropy and hydrogen bonds) are compared with the experimental data for the choosing of the best water model. We find that the SPC and TIP4P models reproduce the best experimental values, and we recommend these models for computer simulations of the aqueous solution of biomolecules.
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                Author and article information

                Contributors
                Journal
                Journal of Biomolecular Structure and Dynamics
                Journal of Biomolecular Structure and Dynamics
                Informa UK Limited
                0739-1102
                1538-0254
                March 03 2022
                : 1-13
                Affiliations
                [1 ]Department of Pharmacoinformatics, National Institute of Pharmaceutical Education and Research, Kolkata, India
                [2 ]Discipline of Natural Sciences, Indian Institute of Information Technology, Design and Manufacturing, Jabalpur, India
                Article
                10.1080/07391102.2022.2045223
                a60a880b-3873-4194-8e37-a4ad441a9e06
                © 2022
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