Doreen Matthies
Doreen Matthies
Principal Investigator, NICHD, NIH
Geverifieerd e-mailadres voor nih.gov - Homepage
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2.2 Ċ resolution cryo-EM structure of β-galactosidase in complex with a cell-permeant inhibitor
A Bartesaghi, A Merk, S Banerjee, D Matthies, X Wu, JLS Milne, ...
Science 348 (6239), 1147-1151, 2015
Neuron-astrocyte metabolic coupling protects against activity-induced fatty acid toxicity
MS Ioannou, J Jackson, SH Sheu, CL Chang, AV Weigel, H Liu, ...
Cell 177 (6), 1522-1535. e14, 2019
Structure of β-galactosidase at 3.2-Ċ resolution obtained by cryo-electron microscopy
A Bartesaghi, D Matthies, S Banerjee, A Merk, S Subramaniam
Proceedings of the National Academy of Sciences 111 (32), 11709-11714, 2014
Cryo-EM structures of the magnesium channel CorA reveal symmetry break upon gating
D Matthies, O Dalmas, MJ Borgnia, PK Dominik, A Merk, P Rao, ...
Cell 164 (4), 747-756, 2016
A tridecameric c ring of the adenosine triphosphate (ATP) synthase from the thermoalkaliphilic Bacillus sp. strain TA2.A1 facilitates ATP synthesis at low …
T Meier, N Morgner, D Matthies, D Pogoryelov, S Keis, GM Cook, ...
Molecular microbiology 65 (5), 1181-1192, 2007
Cell-free expression and assembly of ATP synthase
D Matthies, S Haberstock, F Joos, V Dötsch, J Vonck, F Bernhard, T Meier
Journal of molecular biology 413 (3), 593-603, 2011
The c13 ring from a thermoalkaliphilic ATP synthase reveals an extended diameter due to a special structural region
D Matthies, L Preiss, AL Klyszejko, DJ Muller, GM Cook, J Vonck, T Meier
Journal of molecular biology 388 (3), 611-618, 2009
Single-particle cryo-EM structure of a voltage-activated potassium channel in lipid nanodiscs
D Matthies, C Bae, GES Toombes, T Fox, A Bartesaghi, S Subramaniam, ...
Elife 7, e37558, 2018
High-resolution structure and mechanism of an F/V-hybrid rotor ring in a Na+-coupled ATP synthase
D Matthies, W Zhou, AL Klyszejko, C Anselmi, Ö Yildiz, K Brandt, V Müller, ...
Nature communications 5 (1), 1-14, 2014
A New Type of Na+-Driven ATP Synthase Membrane Rotor with a Two-Carboxylate Ion-Coupling Motif
S Schulz, M Iglesias-Cans, A Krah, Ö Yildiz, V Leone, D Matthies, ...
PLoS biology 11 (6), e1001596, 2013
The structural basis of Rubisco phase separation in the pyrenoid
S He, HT Chou, D Matthies, T Wunder, MT Meyer, N Atkinson, ...
Nature plants 6 (12), 1480-1490, 2020
Using cryo-EM to map small ligands on dynamic metabolic enzymes: studies with glutamate dehydrogenase
MJ Borgnia, S Banerjee, A Merk, D Matthies, A Bartesaghi, P Rao, ...
Molecular pharmacology 89 (6), 645-651, 2016
Cryo-EM structures of excitatory amino acid transporter 3 visualize coupled substrate, sodium, and proton binding and transport
B Qiu, D Matthies, E Fortea, Z Yu, O Boudker
Science Advances 7 (10), eabf5814, 2021
Draft genome sequence of the thermoalkaliphilic Caldalkalibacillus thermarum strain TA2. A1
F Kalamorz, S Keis, DGG McMillan, K Olsson, JA Stanton, P Stockwell, ...
Journal of bacteriology 193 (16), 4290-4291, 2011
Structural basis for early-onset neurological disorders caused by mutations in human selenocysteine synthase
AK Puppala, RL French, D Matthies, U Baxa, S Subramaniam, ...
Scientific reports 6 (1), 1-12, 2016
The crystal structure of human GlnRS provides basis for the development of neurological disorders
J Ognjenović, J Wu, D Matthies, U Baxa, S Subramaniam, J Ling, ...
Nucleic acids research 44 (7), 3420-3431, 2016
Step size of the rotary proton motor in single FoF1-ATP synthase from a thermoalkaliphilic bacterium by DCO-ALEX FRET
E Hammann, A Zappe, S Keis, S Ernst, D Matthies, T Meier, GM Cook, ...
Single Molecule Spectroscopy and Superresolution Imaging V 8228, 46-60, 2012
Allosteric interactions prime androgen receptor dimerization and activation
EV Wasmuth, AV Broeck, JR LaClair, EA Hoover, KE Lawrence, ...
Molecular Cell, 2022
Microdomains form on the luminal face of neuronal extracellular vesicle membranes
D Matthies, NYJ Lee, I Gatera, HA Pasolli, X Zhao, H Liu, D Walpita, Z Liu, ...
Scientific reports 10 (1), 1-9, 2020
Transport mechanism of the neuronal excitatory amino acid transporter
B Qiu, D Matthies, E Fortea, Z Yu, O Boudker
bioRxiv, 2020
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