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Trends in Pharmacological Sciences
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January 5, 2005
Techniques: Recent developments in computer-aided engineering of GPCR ligands using the human adenosine A3 receptor as an example
Stefano Moro, Giampiero Spalluto, Kenneth A Jacobson
Trends in Pharmacological Sciences
|
December 3, 2014
Computational studies to predict or explain G protein coupled receptor polypharmacology
Kenneth A Jacobson, Stefano Costanzi, Silvia Paoletta
Drug Development Research
|
September 17, 2011
Molecular Architecture of G Protein-Coupled Receptors
A Michiel van Rhee, Kenneth A Jacobson
Methods in Cell Biology
|
November 9, 2021
Purinergic GPCR transmembrane residues involved in ligand recognition and dimerization
Veronica Salmaso, Shanu Jain, Kenneth A Jacobson
Purinergic Signalling
|
July 8, 2008
Preface: special issue on medicinal chemistry of purines
Kenneth A Jacobson, Jeff Zablocki, Shripad Bhagwat
Methods in Enzymology
|
January 22, 2013
Probing GPCR structure: adenosine and P2Y nucleotide receptors
Kenneth A Jacobson, Stefano Costanzi, Francesca Deflorian
Neuropharmacology
|
April 19, 2015
Lighting up G protein-coupled purinergic receptors with engineered fluorescent ligands
Francisco Ciruela, Víctor Fernández-Dueñas, Kenneth A Jacobson
Journal of Computer-Aided Molecular Design
|
October 4, 2006
Defining the nucleotide binding sites of P2Y receptors using rhodopsin-based homology modeling
Andrei A Ivanov, Stefano Costanzi, Kenneth A Jacobson
Journal of Medicinal Chemistry
|
May 1, 2009
Evaluation of homology modeling of G-protein-coupled receptors in light of the A(2A) adenosine receptor crystallographic structure
Andrei A Ivanov, Dov Barak, Kenneth A Jacobson
Current Opinion in Pharmacology
|
November 18, 2017
Purinergic drug targets for gastrointestinal disorders
Geoffrey Burnstock, Kenneth A Jacobson, Fievos L Christofi
Page
of 60
Search research articles
Search
Showing results (61-70 of 599) with videos related to
Sort By:
Page
of 60
Trends in Pharmacological Sciences
|
January 5, 2005
Techniques: Recent developments in computer-aided engineering of GPCR ligands using the human adenosine A3 receptor as an example
Stefano Moro, Giampiero Spalluto, Kenneth A Jacobson
Trends in Pharmacological Sciences
|
December 3, 2014
Computational studies to predict or explain G protein coupled receptor polypharmacology
Kenneth A Jacobson, Stefano Costanzi, Silvia Paoletta
Drug Development Research
|
September 17, 2011
Molecular Architecture of G Protein-Coupled Receptors
A Michiel van Rhee, Kenneth A Jacobson
Methods in Cell Biology
|
November 9, 2021
Purinergic GPCR transmembrane residues involved in ligand recognition and dimerization
Veronica Salmaso, Shanu Jain, Kenneth A Jacobson
Purinergic Signalling
|
July 8, 2008
Preface: special issue on medicinal chemistry of purines
Kenneth A Jacobson, Jeff Zablocki, Shripad Bhagwat
Methods in Enzymology
|
January 22, 2013
Probing GPCR structure: adenosine and P2Y nucleotide receptors
Kenneth A Jacobson, Stefano Costanzi, Francesca Deflorian
Neuropharmacology
|
April 19, 2015
Lighting up G protein-coupled purinergic receptors with engineered fluorescent ligands
Francisco Ciruela, Víctor Fernández-Dueñas, Kenneth A Jacobson
Journal of Computer-Aided Molecular Design
|
October 4, 2006
Defining the nucleotide binding sites of P2Y receptors using rhodopsin-based homology modeling
Andrei A Ivanov, Stefano Costanzi, Kenneth A Jacobson
Journal of Medicinal Chemistry
|
May 1, 2009
Evaluation of homology modeling of G-protein-coupled receptors in light of the A(2A) adenosine receptor crystallographic structure
Andrei A Ivanov, Dov Barak, Kenneth A Jacobson
Current Opinion in Pharmacology
|
November 18, 2017
Purinergic drug targets for gastrointestinal disorders
Geoffrey Burnstock, Kenneth A Jacobson, Fievos L Christofi
Page
of 60