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Erwin London
Erwin London
distinguished professor of biochemistry and cell biology
在 stonybrook.edu 的电子邮件经过验证
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引用次数
年份
[10] Delipidation, renaturation, and reconstitution of bacteriorhodopsin
H Bayley, B Höjeberg, KS Huang, HG Khorana, MJ Liao, C Lind, ...
Methods in Enzymology 88, 74-81, 1982
301982
14 Formation and properties of asymmetric lipid vesicles prepared using cyclodextrin-catalyzed lipid exchange
E London
Characterization of Biological Membranes: Structure and Dynamics, 441-464, 2019
22019
1507-Pos Board B277 Investigation of the Martini Force Field for Lipid Raft Membranes Ryan S. Davis1, Mohamed Laradji2. 1Princeton University, Princeton, TN, USA, 2University …
S Chiantia, E London
1H NMR Shows Slow Phospholipid Flip-Flop in Gel and Fluid Bilayers
D Marquardt, FA Heberle, T Miti, B Eicher, E London, J Katsaras, G Pabst
Langmuir 33 (15), 3731-3741, 2017
1282017
668a Wednesday, February 24, 2010
S Chiantia, P Schwille, E London
A convenient and sensitive fluorescence assay for phospholipid vesicles using diphenylhexatriene
E London, GW Feigenson
Analytical biochemistry 88 (1), 203-211, 1978
1081978
A fluorescence-based detergent binding assay for protein hydrophobicity
E London
Analytical biochemistry 154 (1), 57-63, 1986
381986
A new role for lipid domains?
E London
Nature Chemical Biology 11 (6), 383-384, 2015
82015
A novel leaflet-selective fluorescence labeling technique reveals differences between inner and outer leaflets at high bilayer curvature
S Chiantia, AS Klymchenko, E London
Biochimica et Biophysica Acta (BBA)-Biomembranes 1818 (5), 1284-1290, 2012
332012
Acyl chain length and saturation modulate interleaflet coupling in asymmetric bilayers: effects on dynamics and structural order
S Chiantia, E London
Biophysical journal 103 (11), 2311-2319, 2012
1312012
Altering hydrophobic sequence lengths shows that hydrophobic mismatch controls affinity for ordered lipid domains (rafts) in the multitransmembrane strand protein perfringolysin O
Q Lin, E London
Journal of Biological Chemistry 288 (2), 1340-1352, 2013
822013
An amino acid “transmembrane tendency” scale that approaches the theoretical limit to accuracy for prediction of transmembrane helices: relationship to biological hydrophobicity
G Zhao, E London
Protein science 15 (8), 1987-2001, 2006
1682006
Analysis of Lipids and Lipid Rafts in Borrelia
A Toledo, Z Huang, JL Benach, E London
Borrelia burgdorferi: Methods and Protocols, 69-82, 2018
72018
ANALYSIS OF MEMBRANE PENETRATION DEPTH USING FLUORESCENCE QUENCHING BY SPIN-LABELED PHOSPHOLIPIDS
A Chattopadhyay, E London
BIOPHYSICAL JOURNAL 49 (2), A308-A308, 1986
21986
Analyzing membrane protein structure by parallax analysis of fluorescence quenching: Advantages and limitations
E London, K Kachel, RD Kaiser, SW Lew, SE Malenbaum, J Ren, Y Wang, ...
BIOPHYSICAL JOURNAL 74 (2), A249-A249, 1998
1998
Analyzing the structure of polypeptides in membranes by fluorescence quenching.
E London
Biophysical journal 67 (4), 1368, 1994
91994
Analyzing topography of membrane-inserted diphtheria toxin T domain using BODIPY-streptavidin: At low pH, helices 8 and 9 form a transmembrane hairpin but helices 5− 7 form …
MP Rosconi, G Zhao, E London
Biochemistry 43 (28), 9127-9139, 2004
532004
Analyzing transmembrane protein and hydrophobic helix topography by dual fluorescence quenching
GA Caputo, E London
Lipid-Protein Interactions: Methods and Protocols, 351-368, 2019
92019
Analyzing transmembrane protein and hydrophobic helix topography by dual fluorescence quenching
GA Caputo, E London
Lipid-Protein Interactions: Methods and Protocols, 279-295, 2013
82013
Anandamide externally added to lipid vesicles containing-trapped fatty acid amide hydrolase (FAAH) is readily hydrolyzed in a sterol-modulated fashion
M Kaczocha, Q Lin, LD Nelson, MK McKinney, BF Cravatt, E London, ...
ACS chemical neuroscience 3 (5), 364-368, 2012
172012
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