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Wednesday 08th of February 2012
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Citations for 'Heavier-than-air flying machines are impossible'
Cited: Heavier-than-air flying machines are impossible
Update 1 of: Computational modeling approaches to structure - Function analysis of G protein-coupled receptors
Structural model of ligand-G protein-coupled receptor (GPCR) complex based on experimental double mutant cycle data: MT7 snake toxin bound to dimeric hM1 muscarinic receptor
HIV-1 entry inhibition by small-molecule CCR5 antagonists: A combined molecular modeling and mutant study using a high-throughput assay
Validating the network-based objective measure for helical membrane protein structures
3DM: Systematic analysis of heterogeneous superfamily data to discover protein functionalities
Homology modelling and spectroscopy, a never-ending love story
Cardiovascular effects of losartan and its relevant clinical application
Comparative sequence and structural analyses of G-protein-coupled receptor crystal structures and implications for molecular models
Biophysical dissection of membrane proteins
Comparison of the potential multiple binding modes of bicyclam, monocylam, and noncyclam small-molecule CXC chemokine receptor 4 inhibitors
Molecular simulations of rhodopsin tetrameter
Novel insights into GPCR-Peptide interactions: Mutations in extracellular loop 1, ligand backbone methylations and molecular modeling of neurotensin receptor 1
Molecular modeling of vasopressin V2 receptor tetramer in hydrated lipid membrane
Identification of nonpeptide CCR5 receptor agonists by structure-based virtual screening
Molecular modeling of adenosine receptors: New results and trends
Network pattern of residue packing in helical membrane proteins and its application in membrane protein structure prediction
Predicting transmembrane helix pair configurations with knowledge-based distance-dependent pair potentials
The angiotensin II AT1 receptor structure-activity correlations in the light of rhodopsin structure
Discovery of a novel class of selective human CB1 inverse agonists
How a small change in retinal leads to G-protein activation: Initial events suggested by molecular dynamics calculations
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