Structure-driven fragment-based (SDFB) approaches have provided efficient methods for the identification of novel drug candidates. This strategy has been largely applied in discovering several pharmacological ligand classes, including enzyme inhibitors, receptor antagonists and, more recently, also allosteric (positive and negative) modulators. Recently, Siegal and collaborators reported an interesting study, performed on a detergent-solubilized StaR adenosine A2A receptor, describing the existence of both fragment-like negative allosteric modulators (NAMs), and fragment-like positive allosteric modulators (PAMs). From this retrospective study, our results suggest that Supervised Molecular Dynamics (SuMD) simulations can support, on a reaso...
During the last decades, the technological evolution has been very fast and has paved the way to a w...
Molecular modeling has contributed to drug discovery for purinergic GPCRs, including adenosine recep...
The A2A adenosine receptor (A2A AR) is a G protein-coupled receptor that is pharmacologically target...
Structure-driven fragment-based (SDFB) approaches have provided efficient methods for the identifica...
This work is licensed under a Creative Commons Attribution 4.0 International License.Despite intense...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
The search for G protein-coupled receptors (GPCRs) allosteric modulators represents an active resear...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) is becoming an increasingly important method in drug developmen...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
The four receptors that signal for adenosine, A1, A2A, A2B and A3 ARs, belong to the superfamily of ...
An intense effort is made by pharmaceutical and academic research laboratories to identify and devel...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Adenosine receptors (ARs), like many otherGprotein-coupledreceptors (GPCRs), are targets of primary ...
During the last decades, the technological evolution has been very fast and has paved the way to a w...
Molecular modeling has contributed to drug discovery for purinergic GPCRs, including adenosine recep...
The A2A adenosine receptor (A2A AR) is a G protein-coupled receptor that is pharmacologically target...
Structure-driven fragment-based (SDFB) approaches have provided efficient methods for the identifica...
This work is licensed under a Creative Commons Attribution 4.0 International License.Despite intense...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
The search for G protein-coupled receptors (GPCRs) allosteric modulators represents an active resear...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) is becoming an increasingly important method in drug developmen...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
The four receptors that signal for adenosine, A1, A2A, A2B and A3 ARs, belong to the superfamily of ...
An intense effort is made by pharmaceutical and academic research laboratories to identify and devel...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Adenosine receptors (ARs), like many otherGprotein-coupledreceptors (GPCRs), are targets of primary ...
During the last decades, the technological evolution has been very fast and has paved the way to a w...
Molecular modeling has contributed to drug discovery for purinergic GPCRs, including adenosine recep...
The A2A adenosine receptor (A2A AR) is a G protein-coupled receptor that is pharmacologically target...