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Erwin London

Showing results (41-50 of 111) with videos related to

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Journal of Molecular Biology|October 24, 2007
Effect of sequence hydrophobicity and bilayer width upon the minimum length required for the formation of transmembrane helices in membranesShyam S Krishnakumar, Erwin London
Biophysical Journal|June 7, 2011
Preparation and properties of asymmetric large unilamellar vesicles: interleaflet coupling in asymmetric vesicles is dependent on temperature but not curvatureHui-Ting Cheng, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|June 21, 2019
Analyzing Transmembrane Protein and Hydrophobic Helix Topography by Dual Fluorescence QuenchingGregory A Caputo, Erwin London
Biochemistry|March 19, 2003
Using a novel dual fluorescence quenching assay for measurement of tryptophan depth within lipid bilayers to determine hydrophobic alpha-helix locations within membranesGregory A Caputo, Erwin London
The Journal of Biological Chemistry|February 23, 2002
Topography of helices 5-7 in membrane-inserted diphtheria toxin T domain: identification and insertion boundaries of two hydrophobic sequences that do not form a stable transmembrane hairpinMichael P Rosconi, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|February 14, 2013
Analyzing transmembrane protein and hydrophobic helix topography by dual fluorescence quenchingGregory A Caputo, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|May 19, 2026
Analyzing Transmembrane Protein and Hydrophobic Helix Topography by Dual Fluorescence QuenchingGregory A Caputo, Erwin London
Methods in Enzymology|March 13, 2021
Preparation and utility of asymmetric lipid vesicles for studies of perfringolysin O-lipid interactionsShinako Kakuda, Bingchen Li, Erwin London
Biochemistry|March 22, 2008
Behavior of the deeply inserted helices in diphtheria toxin T domain: helices 5, 8, and 9 interact strongly and promote pore formation, while helices 6/7 limit pore formationBing Lai, Gang Zhao, Erwin London
The Journal of Biological Chemistry|January 9, 2009
Preparation and properties of asymmetric vesicles that mimic cell membranes: effect upon lipid raft formation and transmembrane helix orientationHui-Ting Cheng, Megha, Erwin London
Pageof 12

Showing results (41-50 of 111) with videos related to

Sort By:
Pageof 12
Journal of Molecular Biology|October 24, 2007
Effect of sequence hydrophobicity and bilayer width upon the minimum length required for the formation of transmembrane helices in membranesShyam S Krishnakumar, Erwin London
Biophysical Journal|June 7, 2011
Preparation and properties of asymmetric large unilamellar vesicles: interleaflet coupling in asymmetric vesicles is dependent on temperature but not curvatureHui-Ting Cheng, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|June 21, 2019
Analyzing Transmembrane Protein and Hydrophobic Helix Topography by Dual Fluorescence QuenchingGregory A Caputo, Erwin London
Biochemistry|March 19, 2003
Using a novel dual fluorescence quenching assay for measurement of tryptophan depth within lipid bilayers to determine hydrophobic alpha-helix locations within membranesGregory A Caputo, Erwin London
The Journal of Biological Chemistry|February 23, 2002
Topography of helices 5-7 in membrane-inserted diphtheria toxin T domain: identification and insertion boundaries of two hydrophobic sequences that do not form a stable transmembrane hairpinMichael P Rosconi, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|February 14, 2013
Analyzing transmembrane protein and hydrophobic helix topography by dual fluorescence quenchingGregory A Caputo, Erwin London
Methods in Molecular Biology (Clifton, N.J.)|May 19, 2026
Analyzing Transmembrane Protein and Hydrophobic Helix Topography by Dual Fluorescence QuenchingGregory A Caputo, Erwin London
Methods in Enzymology|March 13, 2021
Preparation and utility of asymmetric lipid vesicles for studies of perfringolysin O-lipid interactionsShinako Kakuda, Bingchen Li, Erwin London
Biochemistry|March 22, 2008
Behavior of the deeply inserted helices in diphtheria toxin T domain: helices 5, 8, and 9 interact strongly and promote pore formation, while helices 6/7 limit pore formationBing Lai, Gang Zhao, Erwin London
The Journal of Biological Chemistry|January 9, 2009
Preparation and properties of asymmetric vesicles that mimic cell membranes: effect upon lipid raft formation and transmembrane helix orientationHui-Ting Cheng, Megha, Erwin London
Pageof 12