Development of homology modeling methods will remain an area of active research. These methods aim to develop and model increasingly accurate three-dimensional structures of yet uncrystallized therapeutically relevant proteins e.g. Class A G-Protein Coupled Receptors. Incorporating protein flexibility is one way to achieve this goal. Here, I will discuss the enhancement and validation of the ligand-steered modeling, originally developed by Dr. Claudio Cavasotto, via cross modeling of the newly crystallized GPCR structures. This method uses known ligands and known experimental information to optimize relevant protein binding sites by incorporating protein flexibility. The ligand-steered models were able to model, reasonably reproduce binding...
A critical step in the target identification phase of drug discovery is evaluating druggability, i.e...
Despite tremendous successes of GPCR crystallography, the receptors with available structures repres...
Understanding protein and ligand interactions is fundamental to treat disease and avoid toxicity in ...
Development of homology modeling methods will remain an area of active research. These methods aim t...
G protein-coupled receptors (GPCR) are integral membrane proteins mediating responses from extracell...
Initially, drugs were discovered by either chance or by trial and error through screening methods. B...
Author summary Three-dimensional structures of proteins combined with computational methods have bec...
With >800 members in humans, the G protein-coupled receptor (GPCR) super-family is the target for mo...
The well-defined and characterized 3D crystal structure of a protein is important to explore the top...
Accurate in silico models for the quantitative prediction of the activity of G protein-coupled recep...
Computational modeling is an invaluable tool in the drug discovery process either for small ligand o...
G-protein-coupled receptors (GPCRs) are among the most intensely investigated drug targets. The rece...
G protein-coupled receptors (GPCRs) are therapeutically significant proteins and are targeted by ove...
Computational chemistry and biology are helpful in understanding protein structure and the relations...
Recent breakthroughs in the determination of the crystal structures of G protein-coupled receptors (...
A critical step in the target identification phase of drug discovery is evaluating druggability, i.e...
Despite tremendous successes of GPCR crystallography, the receptors with available structures repres...
Understanding protein and ligand interactions is fundamental to treat disease and avoid toxicity in ...
Development of homology modeling methods will remain an area of active research. These methods aim t...
G protein-coupled receptors (GPCR) are integral membrane proteins mediating responses from extracell...
Initially, drugs were discovered by either chance or by trial and error through screening methods. B...
Author summary Three-dimensional structures of proteins combined with computational methods have bec...
With >800 members in humans, the G protein-coupled receptor (GPCR) super-family is the target for mo...
The well-defined and characterized 3D crystal structure of a protein is important to explore the top...
Accurate in silico models for the quantitative prediction of the activity of G protein-coupled recep...
Computational modeling is an invaluable tool in the drug discovery process either for small ligand o...
G-protein-coupled receptors (GPCRs) are among the most intensely investigated drug targets. The rece...
G protein-coupled receptors (GPCRs) are therapeutically significant proteins and are targeted by ove...
Computational chemistry and biology are helpful in understanding protein structure and the relations...
Recent breakthroughs in the determination of the crystal structures of G protein-coupled receptors (...
A critical step in the target identification phase of drug discovery is evaluating druggability, i.e...
Despite tremendous successes of GPCR crystallography, the receptors with available structures repres...
Understanding protein and ligand interactions is fundamental to treat disease and avoid toxicity in ...