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Journal of Protein Chemistry
|
December 1, 1992
Application of three-dimensional molecular hydrophobicity potential to the analysis of spatial organization of membrane protein domains. II. Optimization of hydrophobic contacts in transmembrane hairpin structures of Na+, K(+)-ATPase
R G Efremov, D I Gulyaev, N N Modyanov
SAR and QSAR in Environmental Research
|
April 8, 2010
Analysis of hydrophobic interactions of antagonists with the beta2-adrenergic receptor
V N Novoseletsky, T V Pyrkov, R G Efremov
Journal of Biomolecular Structure & Dynamics
|
August 1, 1997
Atomic solvation parameters for proteins in a membrane environment. Application to transmembrane alpha-helices
D E Nolde, A S Arseniev, G Vergoten, et al.
Biophysical Journal
|
May 8, 1999
A solvent model for simulations of peptides in bilayers. I. Membrane-promoting alpha-helix formation
R G Efremov, D E Nolde, G Vergoten, et al.
SAR and QSAR in Environmental Research
|
March 4, 2008
Ligand-specific scoring functions: improved ranking of docking solutions
T V Pyrkov, J P Priestle, E Jacoby, et al.
Biophysical Journal
|
May 8, 1999
A solvent model for simulations of peptides in bilayers. II. Membrane-spanning alpha-helices
R G Efremov, D E Nolde, G Vergoten, et al.
Journal of Protein Chemistry
|
December 1, 1992
Application of three-dimensional molecular hydrophobicity potential to the analysis of spatial organization of membrane domains in proteins: I. Hydrophobic properties of transmembrane segments of Na+, K(+)-ATPase
R G Efremov, D I Gulyaev, G Vergoten, et al.
Bioorganicheskaia Khimiia
|
January 28, 2004
[Interaction of cardiotoxin A5 with a membrane: role of conformational heterogeneity and hydrophilic properties]
A G Konshina, P E Volynskiĭ, A S Arsen'ev, et al.
Bioorganicheskaia Khimiia
|
May 16, 2000
[Modeling of peptides and proteins in membrane environment. I. A solvation model mimicking a lipid bilayer]
D E Nol'de, P E Volynskiĭ, A S Arsen'ev, et al.
Bioorganicheskaia Khimiia
|
September 9, 2010
[Molecular docking: role of intermolecular contacts in formation of complexes of proteins with nucleotides and peptides]
T V Pyrkov, I V Ozerov, E D Blitskaia, et al.
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Search research articles
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Showing results (11-20 of 42) with videos related to
Sort By:
Page
of 5
Journal of Protein Chemistry
|
December 1, 1992
Application of three-dimensional molecular hydrophobicity potential to the analysis of spatial organization of membrane protein domains. II. Optimization of hydrophobic contacts in transmembrane hairpin structures of Na+, K(+)-ATPase
R G Efremov, D I Gulyaev, N N Modyanov
SAR and QSAR in Environmental Research
|
April 8, 2010
Analysis of hydrophobic interactions of antagonists with the beta2-adrenergic receptor
V N Novoseletsky, T V Pyrkov, R G Efremov
Journal of Biomolecular Structure & Dynamics
|
August 1, 1997
Atomic solvation parameters for proteins in a membrane environment. Application to transmembrane alpha-helices
D E Nolde, A S Arseniev, G Vergoten, et al.
Biophysical Journal
|
May 8, 1999
A solvent model for simulations of peptides in bilayers. I. Membrane-promoting alpha-helix formation
R G Efremov, D E Nolde, G Vergoten, et al.
SAR and QSAR in Environmental Research
|
March 4, 2008
Ligand-specific scoring functions: improved ranking of docking solutions
T V Pyrkov, J P Priestle, E Jacoby, et al.
Biophysical Journal
|
May 8, 1999
A solvent model for simulations of peptides in bilayers. II. Membrane-spanning alpha-helices
R G Efremov, D E Nolde, G Vergoten, et al.
Journal of Protein Chemistry
|
December 1, 1992
Application of three-dimensional molecular hydrophobicity potential to the analysis of spatial organization of membrane domains in proteins: I. Hydrophobic properties of transmembrane segments of Na+, K(+)-ATPase
R G Efremov, D I Gulyaev, G Vergoten, et al.
Bioorganicheskaia Khimiia
|
January 28, 2004
[Interaction of cardiotoxin A5 with a membrane: role of conformational heterogeneity and hydrophilic properties]
A G Konshina, P E Volynskiĭ, A S Arsen'ev, et al.
Bioorganicheskaia Khimiia
|
May 16, 2000
[Modeling of peptides and proteins in membrane environment. I. A solvation model mimicking a lipid bilayer]
D E Nol'de, P E Volynskiĭ, A S Arsen'ev, et al.
Bioorganicheskaia Khimiia
|
September 9, 2010
[Molecular docking: role of intermolecular contacts in formation of complexes of proteins with nucleotides and peptides]
T V Pyrkov, I V Ozerov, E D Blitskaia, et al.
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