Entry ID |
Original Release date |
Data summary |
Entry Title |
Citation Title |
Authors |
34607 |
2021-04-05 |
Chemical Shifts: 1 set |
periplasmic domain of Vibrio cholerae ToxR |
The periplasmic domains of Vibriocholerae ToxR and ToxS are forming a strong heterodimeric complex independent on the redox state of ToxR cysteines.
|
E Schrank, F S Falsone, G E Wagner, J Reidl, K Zangger, N Gubensak, T MI Berger, T Pavkov-Keller |
34457 |
2019-12-02 |
Chemical Shifts: 1 set |
Refined solution NMR structure of hVDAC-1 in detergent micelles |
The Structural Basis for Low Conductance in the Membrane Protein VDAC upon beta-NADH Binding and Voltage Gating
|
G Brannigan, G F Amodeo, G Wagner, M Winterhalter, R Boehm, S Chavali, S Hiller, S Murlidaran |
30513 |
2018-12-04 |
Chemical Shifts: 1 set |
TCR alpha transmembrane domain |
The T Cell Antigen Receptor alpha Transmembrane Domain Coordinates Triggering through Regulation of Bilayer Immersion and CD3 Subunit Associations.
|
A Boeszoermenyi, A Yoshizawa, E L Reinherz, G Wagner, H Arthanari, J S Duke-Cohan, K Bi, K N Brazin, L Song, M J Lang, P A Reche, P Kaur, R E Hussey, R J Mallis, Y Feng |
34309 |
2018-09-06 |
Chemical Shifts: 1 set |
Yeast V-ATPase transmembrane helix 7 NMR structure in DPC micelles |
A cation-Pi interaction in a transmembrane helix of vacuolar ATPase keeps the proton transporting arginine in a hydrophobic environment
|
C Oostenrbink, F Falsone, F Sarkleti, G Wagner-Lichtenegger, H Hofbauer, H Wolinski, K Zangger, M Setz, N Gubensak, S Kohlwein, S Kosol, S Lichtenegger, W Hohlweg |
27128 |
2019-11-22 |
Chemical Shifts: 1 set |
Voltage-dependent anion channel - VDAC E73V mutant |
The Structural Basis for Low Conductance in the Membrane Protein VDAC upon beta-NADH Binding and Voltage Gating
|
G Brannigan, G F Amodeo, G Wagner, M Winterhalter, R Boehm, S Chavali, S Hiller, S Murlidaran |
36034 |
2017-05-30 |
Chemical Shifts: 1 set |
NMR structure of eIF3 36-163 |
Molecular Landscape of the Ribosome Pre-initiation Complex during mRNA Scanning: Structural Role for eIF3c and Its Control by eIF5
|
Alan G Hinnebusch, Asokan Ananbandam, Brytteny Thompson, Chelsea Moore, Chingakham Ranjit R Singh, Eddie Dagraca, Eiji Obayashi, Eric Aube, Evangelos Papadopoulos, Fan Zhang, Florian Stengel, Gerhard Wagner, Haribabu Arthanari, Hiroyuki Hiraishi, Hisashi Yoshida, Ian Harmon, Jacob Morris, Jan Peter P Erzberger, Katsura Asano, Mahmoud L Nasr, Philip Gao, Pilar Martin-Marcos, Rafael E Luna, Riccardo Pellarin, Samantha Hustak, Satoru Unzai, Takashi Nagata, Takeshi Urano |
30077 |
2016-06-24 |
Chemical Shifts: 1 set |
Structural model of a apo G-protein alpha subunit determined with NMR residual dipolar couplings and SAXS |
Conformational dynamics of a G-protein alpha subunit is tightly regulated by nucleotide binding
|
A Plueckthun, D Goricanec, F Hagn, G Wagner, P Egloff, R Stehle, S Grigori |
30078 |
2016-06-24 |
Chemical Shifts: 1 set |
Structural Model of a Protein alpha subunit in complex with GDP obtained with SAXS and NMR residual couplings |
Conformational dynamics of a G-protein alpha subunit is tightly regulated by nucleotide binding
|
A Plueckthun, D Goricanec, F Hagn, G Wagner, P Egloff, R Stehle, S Grigoriu |
30030 |
2016-09-30 |
Chemical Shifts: 1 set |
Solution structure of AN1-type zinc finger domain from Cuz1 (Cdc48 associated ubiquitin-like/zinc-finger protein-1) |
Solution Structure of the Cuz1 AN1 Zinc Finger Domain: An Exposed LDFLP Motif Defines a Subfamily of AN1 Proteins
|
G Wagner, H Arthanari, J Hanna, M Allan, M K Bhanu, Z-Y J Sun |
26746 |
2016-10-04 |
Chemical Shifts: 1 set |
Backbone resonance assignment of an inhibitory G-alpha domain |
Conformational dynamics of a G-protein alpha subunit is tightly regulated by nucleotide binding
|
Andreas Plueckthun, David Goricanec, Franz Hagn, Gerhard Wagner, Pascal Egloff, Ralf Stehle, Simina Grigoriu |
17139 |
2011-06-07 |
Chemical Shifts: 1 set |
Structure of ARC92VBD/MED25ACID |
Structure of the VP16 transactivator target in the Mediator
|
Alexander G Milbradt, Anders M Naar, Gerhard Wagner, Koh Takeuchi, Madhura Kulkarni, Philipp Selenko, Rafael Luna, Tingfang Yi, Zhen-Yu J Sun |
7185 |
2006-10-11 |
Chemical Shifts: 1 set |
An ARC/MEDIATOR subunit required for SREBP gene activation and regulation of cholesterol and fatty acid homeostasis |
An ARC/Mediator subunit required for SREBP control of cholesterol and lipid homeostasis
|
A C Hart, A K Walker, A M Naar, B W Vought, C Macol, F Yang, G Wagner, J L Watts, J S Satterlee, L Iyer, R DeBeaumont, R M Saito, R Tjian, S G Hyberts, S van den Heuvel, S Yang, Z Y Jim_Sun |
5661 |
2003-06-12 |
Chemical Shifts: 1 set |
Rapid backbone 1H, 13C, and 15N assignment of the V1 domain of human PKC iota using the new program IBIS |
Letter to the Editor: Rapid backbone 1H, 13C, and 15N assignment of the V1 domain of human PKC iota using the new program IBIS
|
Alan P Fields, Gerhard Wagner, Michael HA Roehrl, Sven G Hyberts, Zhen-Yu J Sun |
5275 |
2002-03-22 |
Chemical Shifts: 1 set |
The rhesus rotavirus sialic acid binding domain without ligand |
The rhesus rotavirus VP4 sialic acid binding domain has a galectin fold with a novel carbohydrate binding site
|
G Wagner, P R Dormitzer, S C Harrison, Z-Y J Sun |
5180 |
2001-11-12 |
Chemical Shifts: 1 set |
Solution nmr structure of the dimerization domain of the yeast transcriptional activator Gal4 (residues 50-106) |
Recruitment of the transcriptional machinery through GAL11P:structure and interactions of the GAL4 dimerization domain
|
A Z Ansari, B Hare, E J Shin, G Wagner, M Ptashne, N Simkovic, Patricia Hidalgo, P Schmidt, S Farrell |
5148 |
2002-01-23 |
Chemical Shifts: 1 set |
NMR Structure of the [2Fe-2S] Ferredoxin Domain from Soluble Methane Monooxygenase Reductase and Interaction with its Hydroxylase |
NMR Structure of the [2Fe-2S] Ferredoxin Domain from Soluble Methane Monooxygenase Reductase and Interaction with its Hydroxylase
|
A A Lugovskoy, G Wagner, J Muller, S J Lippard |
5072 |
2001-07-17 |
Chemical Shifts: 1 set |
CD3 Epsilon and gamma Ectodomain Fragment Complex in Single-Chain Construct |
Mechanisms Contributing to T Cell Receptor Signaling and Assembly Revealed by the Solution Structure of an Ectodomain Fragment of the CD3eg Heterodimer
|
E L Reinherz, G Wagner, K S Kim, ZY J Sun |
5022 |
2003-01-07 |
Chemical Shifts: 1 set |
Converting a DNA Damage Checkpoint Effector (UmuD2C) into a Lesion Bypass Polymerase (UmuD'2C) |
Converting a DNA Damage Checkpoint Effector (UmuD2C) into a Lesion Bypass Polymerase (UmuD'2C)
|
A E Ferentz, G C Walker, G Wagner |
4775 |
2000-08-04 |
Chemical Shifts: 1 set |
Solution structure of the spindle assembly checkpoint protein human MAD2 |
Structure of the Mad2 spindle assembly checkpoint protein and its interaction with Cdc20
|
G Fang, G Wagner, H Yu, M Coldiron, M W Kirschner, X Luo, Y Lin |
4574 |
2001-03-02 |
Chemical Shifts: 1 set |
CIDE-N Domain of Human CIDE-B |
Solution Structure of the CIDE-N Domain of CIDE-B and a Model for CIDE-N/CIDE-N Interactions in the DNA Fragmenttion Pathway of Apoptosis
|
A A Lugovskoy, G Wagner, J J Chou, J S McCarty, P Li, P Zhou |
4455 |
1999-12-22 |
Chemical Shifts: 1 set |
Glycan-free mutant adhesion domain of human CD58 (LFA-3) |
Functional Glycan-free Adhesion Domain of Human Cell Surface Receptor CD58: Design, Production, and NMR Studies
|
E L Reinherz, G Wagner, J Li, M Kim, V Dotsch, Z Y J Sun |
4519 |
2000-07-12 |
Chemical Shifts: 1 set |
HUMAN TRANSLATION INITIATION FACTOR EIF1A |
The eIF1A solution structure reveals a large RNA-binding surface important for scanning function
|
C UT Hellen, G Wagner, J L Battiste, T V Pestova |
4431 |
2003-01-09 |
Chemical Shifts: 1 set |
Structure of the Soluble Methane Monooxygenase Regulatory Protein B |
Structure of the soluble methane monooxygenase regulatory protein B
|
G T Gassner, G Wagner, K J Walters, S J Lippard |
4330 |
2005-01-21 |
Chemical Shifts: 1 set |
A Single-Chain T Cell Receptor |
Structure, Specificity and CDR Mobility of a Class II Restricted T Cell Receptor.
|
B J Hare, D F Wyss, E L Reinherz, G Wagner, M S Osburne, P S Kern |
4255 |
1999-11-23 |
Chemical Shifts: 1 set |
Human Translation Initiation Factor eIF1 |
Structure and interactions of the translation initiation factor eIF1
|
C M Fletcher, C UT Hellen, G Wagner, T V Pestova |
2201 |
1995-07-31 |
Chemical Shifts: 1 set |
Solution Structure of Murine Epidermal Growth Factor Determined by NMR Spectroscopy and Refined by Energy Minimization with Restraints |
Solution Structure of Murine Epidermal Growth Factor Determined by NMR Spectroscopy and Refined by Energy Minimization with Restraints
|
A W Burgess, E C Nice, Gerhard Wagner, G T Montelione, H A Scheraga, Kenneth D Gibson, Kurt Wuthrich |
18 |
1995-07-31 |
Chemical Shifts: 1 set |
Stereospecific assignments of side-chain protons and characterization of torsion angles in Eglin c |
Stereospecific assignments of side-chain protons and characterization of torsion angles in Eglin c
|
Gerhard Wagner, Sven G Hyberts, Walter Marki |
289 |
1995-07-31 |
Chemical Shifts: 1 set |
Sequence-Specific 1H NMR Assignments and Secondary Structure of Eglin c |
Sequence-Specific 1H NMR Assignments and Secondary Structure of Eglin c
|
Gerhard Wagner, Sven G Hyberts |
3032 |
1999-06-14 |
Chemical Shifts: 1 set |
Changing the Inhibitory Specificity and Function of the Proteinase Inhibitor Eglin c by Site-Directed Mutagenesis: Functional and Structural Investigation |
Changing the Inhibitory Specificity and Function of the Proteinase Inhibitor Eglin c by Site-Directed Mutagenesis: Functional and Structural Investigation
|
Dirk W Heinz, Gerhard Wagner, Jeffrey W Peng, John P Priestle, Markus G Grutter, Sven G Hyberts |
bmse500001 |
2010-03-30 |
: sets |
Androstenedione |
|
A Guo, A M Weljie, B D Sykes, C Fung, C Knox, D Arndt, D Block, D Cheng, D Clive, D D Hau, D S Wishart, D Tzur, F Bamforth, G Amegbey, G D Macinnis, G E Duggan, H J Vogel, I Forsythe, J Miniaci, J Wagner, K Jeroncic, K Jewell, L Li, L Nikolai, L Querengesser, M A Coutouly, M Clements, M Gebremedhin, M Lewis, N Guo, N Young, P Stothard, P Tang, R Dowlatabadi, R Eisner, R Greiner, S Sawhney, S Shrivastava, T Marrie, Y Zhang |