The use of molecular simulation to estimate the strength of macromolecular binding free energies is becoming increasingly widespread, with goals ranging from lead optimization and enrichment in drug discovery to personalizing or stratifying treatment regimes. In order to realize the potential of such approaches to predict new results, not merely to explain previous experimental findings, it is necessary that the methods used are reliable and accurate, and that their limitations are thoroughly understood. However, the computational cost of atomistic simulation techniques such as molecular dynamics (MD) has meant that until recently little work has focused on validating and verifying the available free energy methodologies, with the consequen...
Despite a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations in...
Despite of a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations...
Despite the development of high-throughput computational methods able to screen very large libraries...
ABSTRACT: The use of molecular simulation to estimate the strength of macromolecular binding free en...
The binding free energies (ΔGBind) obtained from molecular mechanics with Poisson–Boltzmann s...
The binding free energies (Δ<i>G</i><sub>Bind</sub>) obtained from molecular mechanics with Poisson–...
The constants of binding of five peptide analogs to the active site of the HIV-1 aspartic-protease a...
A method is proposed for the estimation of absolute binding free energy of interaction between prote...
Overcoming the emergence of drug resistance in HIV is a major challenge to the scientific community....
The free energy simulation technique is used to evaluate the relative binding affinity of a set of h...
2691) has been performed on a training set of 33 HIV-1 protease inhibitors, and the resulting regres...
Molecular mechanics Poisson–Boltzmann surface area (MM-PBSA), a method to estimate interaction free ...
Drug resistance of mutations in HIV-1 protease (PR) is the most severe challenge to the long-term ef...
Drug resistance of mutations in HIV-1 protease (PR) is the most severe challenge to the long-term ef...
Despite of a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations...
Despite a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations in...
Despite of a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations...
Despite the development of high-throughput computational methods able to screen very large libraries...
ABSTRACT: The use of molecular simulation to estimate the strength of macromolecular binding free en...
The binding free energies (ΔGBind) obtained from molecular mechanics with Poisson–Boltzmann s...
The binding free energies (Δ<i>G</i><sub>Bind</sub>) obtained from molecular mechanics with Poisson–...
The constants of binding of five peptide analogs to the active site of the HIV-1 aspartic-protease a...
A method is proposed for the estimation of absolute binding free energy of interaction between prote...
Overcoming the emergence of drug resistance in HIV is a major challenge to the scientific community....
The free energy simulation technique is used to evaluate the relative binding affinity of a set of h...
2691) has been performed on a training set of 33 HIV-1 protease inhibitors, and the resulting regres...
Molecular mechanics Poisson–Boltzmann surface area (MM-PBSA), a method to estimate interaction free ...
Drug resistance of mutations in HIV-1 protease (PR) is the most severe challenge to the long-term ef...
Drug resistance of mutations in HIV-1 protease (PR) is the most severe challenge to the long-term ef...
Despite of a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations...
Despite a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations in...
Despite of a large number of antiretroviral drugs targeting HIV-1 protease for inhibition, mutations...
Despite the development of high-throughput computational methods able to screen very large libraries...