[HTML][HTML] DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan, H Zhao… - Journal of …, 2019 - Springer
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan… - Journal of …, 2019 - search.proquest.com
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

[HTML][HTML] DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan… - Journal of …, 2019 - ncbi.nlm.nih.gov
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

[HTML][HTML] DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li… - Journal of …, 2019 - jcheminf.biomedcentral.com
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

DLIGAND2: an improved knowledge-based energy function for protein-ligand interactions using the distance-scaled, finite, ideal-gas reference state.

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan… - Journal of …, 2019 - europepmc.org
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

[PDF][PDF] DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan, H Zhao, Y Zhou… - 2019 - researchgate.net
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

DLIGAND2: an improved knowledge-based energy function for protein-ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan… - Journal of …, 2019 - pubmed.ncbi.nlm.nih.gov
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

DLIGAND2: an improved knowledge-based energy function for protein-ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan, H Zhao… - Journal of …, 2019 - go.gale.com
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

[PDF][PDF] DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan, H Zhao, Y Zhou… - 2019 - academia.edu
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …

DLIGAND2: an improved knowledge-based energy function for protein–ligand interactions using the distance-scaled, finite, ideal-gas reference state.

P Chen, Y Ke, Y Lu, Y Du, J Li, H Yan… - Journal of …, 2019 - search.ebscohost.com
Performance of structure-based molecular docking largely depends on the accuracy of
scoring functions. One important type of scoring functions are knowledge-based potentials …