Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
52180 | 2024-07-31 | Chemical Shifts: 1 set |
SurA Ile and Met methyl assignments |
Dual client binding sites in the ATP-independent chaperone SurA
|
Anastasia Zhuravleva, Andrew J Wilson, Antonio N Calabrese, Bob Schiffrin, David J Brockwell, G Nasir Khan, Iain W Manfield, Joel A Crossley, Jonathan M Machin, Martin Walko, Sheena E Radford, Tomas Fessl |
30861 | 2021-03-01 | Chemical Shifts: 1 set Spectral_peak_list: 3 sets |
Solution NMR structure of the PNUTS amino-terminal Domain fused to Myc Homology Box 0 |
The MYC oncoprotein directly interacts with its chromatin cofactor PNUTS to recruit PP1 phosphatase
|
Aaliya Tamachi, Alexander Lemak, Alexandra Ahlner, Bjorn Wallner, Cheryl H Arrowsmith, Cornelia Redel, David W Andrews, Isak Johansson-Akhe, Linda Z Penn, Maria Sunnerhagen, Scott Houliston, Shili Duan, Tristan Kenney, Vivian Morad, Yong Wei |
30722 | 2020-02-21 | Chemical Shifts: 1 set |
Solution NMR structure of the N-terminal domain of the Serine/threonine-protein phosphatase 1 regulatory subunit 10, PPP1R10 |
The MYC oncoprotein directly interacts with its chromatin cofactor PNUTS to recruit PP1 phosphatase
|
Aaliya Tamachi, Alexander Lemak, Alexandra Ahlner, Bjorn Wallner, Cheryl H Arrowsmith, Cornelia Redel, David W Andrews, Isak Johansson-Akhe, Linda Z Penn, Maria Sunnerhagen, Scott Houliston, Shili Duan, Tristan Kenney, Vivian Morad, Yong Wei |
36294 | 2021-05-11 | Chemical Shifts: 1 set |
membrane-bound Bax helix2-helix5 domain |
An amphipathic Bax core dimer forms part of the apoptotic pore wall in the mitochondrial membrane
|
Alessandro Piai, Bin Wu, Bo OuYang, David W Andrews, Fei Qi, Fujiao Lv, James J Chou, Jialing Lin, Juan Del Rosario, Justin Kale, Justin Pogmore, Lingyu Du, Liujuan Zhou, Maorong Wen, Shuqing Wang, Yaqing Yang, Zhijun Liu, Zhi Zhang |
30204 | 2017-09-25 | Chemical Shifts: 1 set Spectral_peak_list: 2 sets |
Solution structure of the de novo mini protein gHH_44 |
Accurate de novo design of hyperstable constrained peptides
|
Alexander Eletsky, Andrew Watkins, Christopher D Bahl, Colin E Correnti, David Baker, David J Craik, Evangelos Coutsias, Gabriel J Rocklin, Garry W Buchko, Gaurav Bhardwaj, James M Olson, Jason M Gilmore, Lauren P Carter, Olivier Cheneval, Per Jr J Greisen, Peta J Harvey, Po-Ssu S Huang, Quentin Kaas, Richard Bonneau, Stephen A Rettie, Surya V Pulavarti, Thomas Szyperski, Thomas W Linsky, Vikram Khipple K Mulligan, William A Johnsen, Xianzhong Xu, Yifan Song |
16428 | 2010-02-02 | Chemical Shifts: 1 set Residual Dipolar Couplings: 1 set |
The structure of the KlcA and ArdB proteins show a novel fold and antirestriction activity against Type I DNA restriction systems in vivo but not in vitro. |
The structure of the KlcA and ArdB proteins reveals a novel fold and antirestriction activity against Type I DNA restriction systems in vivo but not in vitro.
|
Andrew P Herbert, David TF Dryden, Dimitra Serfiotis-Mitsa, Dinesh C Soares, Dusan Uhrin, Gareth A Roberts, Garry W Blakely, John H White |
7215 | 2007-01-09 | Chemical Shifts: 1 set Coupling Constants: 1 set |
Backbone 1H Chemical Shift Assignments for J7 |
Mimotopes of Apical Membrane Antigen 1: Structures of Phage-Derived Peptides Recognized by the Inhibitory Monoclonal Antibody 4G2dc1 and Design of a More Active Analogue
|
Andrew M Coley, David W Keizer, Jennifer K Sabo, Joanne L Casey, Kathy Parisi, Michael Foley, Raymond S Norton, Zhi-Ping Feng |
7214 | 2007-01-09 | Chemical Shifts: 1 set Coupling Constants: 1 set |
Backbone 1H Chemical Shift Assignments for J3 |
Mimotopes of Apical Membrane Antigen 1: Structures of Phage-Derived Peptides Recognized by the Inhibitory Monoclonal Antibody 4G2dc1 and Design of a More Active Analogue
|
Andrew M Coley, David W Keizer, Jennifer K Sabo, Joanne L Casey, Kathy Parisi, Michael Foley, Raymond S Norton, Zhi-Ping Feng |
7212 | 2007-01-09 | Chemical Shifts: 1 set Coupling Constants: 1 set |
Backbone 1H Chemical Shift Assignments for J1 |
Mimotopes of Apical Membrane Antigen 1: Structures of Phage-Derived Peptides Recognized by the Inhibitory Monoclonal Antibody 4G2dc1 and Design of a More Active Analogue
|
Andrew M Coley, David W Keizer, Jennifer K Sabo, Joanne L Casey, Kathy Parisi, Michael Foley, Raymond S Norton, Zhi-Ping Feng |
7213 | 2007-01-09 | Chemical Shifts: 1 set Coupling Constants: 1 set |
Backbone 1H Chemical Shift Assignments for J1cc |
Mimotopes of Apical Membrane Antigen 1: Structures of Phage-Derived Peptides Recognized by the Inhibitory Monoclonal Antibody 4G2dc1 and Design of a More Active Analogue
|
Andrew M Coley, David W Keizer, Jennifer K Sabo, Joanne L Casey, Kathy Parisi, Michael Foley, Raymond S Norton, Zhi-Ping Feng |
5478 | 2003-12-19 | Chemical Shifts: 1 set |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion
|
Andrew M Coley, David W Keizer, Felomena Li, Luke A Miles, Margie Nair, Michael Foley, Raymond S Norton, Robin F Anders |
5476 | 2003-12-19 | Chemical Shifts: 1 set |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion
|
Andrew M Coley, David W Keizer, Felomena Li, Luke A Miles, Margie Nair, Michael Foley, Raymond S Norton, Robin F Anders |
5477 | 2003-12-19 | Chemical Shifts: 1 set |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion
|
Andrew M Coley, David W Keizer, Felomena Li, Luke A Miles, Margie Nair, Michael Foley, Raymond S Norton, Robin F Anders |
5479 | 2003-12-19 | Chemical Shifts: 1 set |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion |
Structures of phage-display peptides that bind to the malarial surface protein, apical membrane antigen 1, and block erythrocyte invasion
|
Andrew M Coley, David W Keizer, Felomena Li, Luke A Miles, Margie Nair, Michael Foley, Raymond S Norton, Robin F Anders |
4035 | 2005-04-21 | Chemical Shifts: 1 set |
Solution Structure of the DNA-Binding Domain of a Human Papillomavirus E2 Protein: Evidence for Flexible DNA-Binding Regions |
Solution Structure of the DNA-Binding Domain of a Human Papillomavirus E2 Protein: Evidence for Flexible DNA-Binding Regions
|
Andrew M Petros, David A Egan, Heng Liang, Ho S Yoon, Karl Walter, Robert P Meadows, Stephen W Fesik, Terry Robins, Thomas F Holzman |
4029 | 1999-10-11 | Chemical Shifts: 1 set |
Chemical Shift Mapping of the RNA-binding Interface to the Multiple-RBD Protein Sex-Lethal: Chemical Shifts for the Free Protein |
Chemical Shift Mapping of the RNA-binding Interface to the Multiple-RBD Protein Sex-Lethal
|
Andrew L Lee, Brian F Volkman, Daniel A Barbash, David E Wemmer, David Z Rudner, Donald C Rio, Roland Kanaar, Stephanie A Robertson, Thomas W Cline |
4028 | 2001-02-22 | Chemical Shifts: 1 set |
Chemical Shift Mapping of the RNA-binding Interface to the Multiple-RBD Protein Sex-Lethal: Chemical Shifts for the Protein-RNA Complex |
Chemical Shift Mapping of the RNA-binding Interface to the Multiple-RBD Protein Sex-Lethal
|
Andrew L Lee, Brian F Volkman, Daniel A Barbash, David E Wemmer, David Z Rudner, Donald C Rio, Roland Kanaar, Stephanie A Robertson, Thomas W Cline |
4049 | 1999-08-24 | Chemical Shifts: 1 set |
Solution Structure of the Amino-Terminal Fragment of Urokinase-Type Plasminogen Activator |
Solution Structure of the Amino-Terminal Fragment of Urokinase-Type Plasminogen Activator
|
Andrew M Petros, Andrew P Hansen, Andrew P Mazar, David G Nettesheim, Edward T Olejniczak, Jack Henkin, Robert P Meadows, Robert X Xu, Stephen W Fesik, Terry M Pederson |