David Drew
David Drew
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Cited by
Global topology analysis of the Escherichia coli inner membrane proteome
DO Daley, M Rapp, E Granseth, K Melén, D Drew, G Von Heijne
Science 308 (5726), 1321-1323, 2005
Maltose–neopentyl glycol (MNG) amphiphiles for solubilization, stabilization and crystallization of membrane proteins
PS Chae, SGF Rasmussen, RR Rana, K Gotfryd, R Chandra, MA Goren, ...
Nature methods 7 (12), 1003-1008, 2010
Shared molecular mechanisms of membrane transporters
D Drew, O Boudker
Annual review of biochemistry 85, 543-572, 2016
Optimization of membrane protein overexpression and purification using GFP fusions
D Drew, M Lerch, E Kunji, DJ Slotboom, JW de Gier
Nature methods 3 (4), 303-313, 2006
GFP-based optimization scheme for the overexpression and purification of eukaryotic membrane proteins in Saccharomyces cerevisiae
D Drew, S Newstead, Y Sonoda, H Kim, G Von Heijne, S Iwata
Nature protocols 3 (5), 784-798, 2008
Rationalizing membrane protein overexpression
S Wagner, ML Bader, D Drew, JW de Gier
Trends in biotechnology 24 (8), 364-371, 2006
The role of interfacial lipids in stabilizing membrane protein oligomers
K Gupta, JAC Donlan, JTS Hopper, P Uzdavinys, M Landreh, WB Struwe, ...
Nature 541 (7637), 421-424, 2017
Crystal structure of a prokaryotic homologue of the mammalian oligopeptide–proton symporters, PepT1 and PepT2
S Newstead, D Drew, AD Cameron, VLG Postis, X Xia, PW Fowler, ...
The EMBO journal 30 (2), 417-426, 2011
Green fluorescent protein as an indicator to monitor membrane protein overexpression in Escherichia coli
DE Drew, G Von Heijne, P Nordlund, JWL de Gier
FEBS letters 507 (2), 220-224, 2001
High-throughput fluorescent-based optimization of eukaryotic membrane protein overexpression and purification in Saccharomyces cerevisiae
S Newstead, H Kim, G von Heijne, S Iwata, D Drew
Proceedings of the National Academy of Sciences 104 (35), 13936-13941, 2007
Crystal structure of a bacterial homologue of the bile acid sodium symporter ASBT
NJ Hu, S Iwata, AD Cameron, D Drew
Nature 478 (7369), 408-411, 2011
A two-domain elevator mechanism for sodium/proton antiport
C Lee, HJ Kang, C Von Ballmoos, S Newstead, P Uzdavinys, DL Dotson, ...
Nature 501 (7468), 573-577, 2013
Alternating access mechanism in the POT family of oligopeptide transporters
N Solcan, J Kwok, PW Fowler, AD Cameron, D Drew, S Iwata, ...
The EMBO journal 31 (16), 3411-3421, 2012
Structure and mechanism of the mammalian fructose transporter GLUT5
N Nomura, G Verdon, HJ Kang, T Shimamura, Y Nomura, Y Sonoda, ...
Nature 526 (7573), 397-401, 2015
Rapid topology mapping of Escherichia coli inner-membrane proteins by prediction and PhoA/GFP fusion analysis
D Drew, D Sjöstrand, J Nilsson, T Urbig, C Chin, JW de Gier, ...
Proceedings of the National Academy of Sciences 99 (5), 2690-2695, 2002
Structures and general transport mechanisms by the major facilitator superfamily (MFS)
D Drew, RA North, K Nagarathinam, M Tanabe
Chemical reviews 121 (9), 5289-5335, 2021
Assembly and overexpression of membrane proteins in Escherichia coli
D Drew, L Fröderberg, L Baars, JWL de Gier
Biochimica et Biophysica Acta (BBA)-Biomembranes 1610 (1), 3-10, 2003
Optimizing membrane protein overexpression in the Escherichia coli strain Lemo21 (DE3)
S Schlegel, J Löfblom, C Lee, A Hjelm, M Klepsch, M Strous, D Drew, ...
Journal of molecular biology 423 (4), 648-659, 2012
A scalable, GFP‐based pipeline for membrane protein overexpression screening and purification
D Drew, DJ Slotboom, G Friso, T Reda, P Genevaux, M Rapp, ...
Protein science 14 (8), 2011-2017, 2005
Benchmarking membrane protein detergent stability for improving throughput of high-resolution X-ray structures
Y Sonoda, S Newstead, NJ Hu, Y Alguel, E Nji, K Beis, S Yashiro, C Lee, ...
Structure 19 (1), 17-25, 2011
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