Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
34249 | 2019-04-03 | Chemical Shifts: 1 set |
FLN5 (full length) |
Mapping energy landscapes of a growing filamin domain reveals an intermediate associated with proline isomerization during biosynthesis
|
A ME Cassaignau, A S Wentink, C A Waudby, C Camilloni, J Christodoulou, J M Schmidt-Engler, L D Cabrita, M E Karyadi, M Vendruscolo, S HS Chan, T Wlodarski |
30051 | 2016-06-06 | Chemical Shifts: 2 sets |
Intermediate state lying on the pathway of release of Tat from HIV-1 TAR. |
Structure of a low-population binding intermediate in protein-RNA recognition
|
A N Borkar, C Camilloni, F A Aprile, G Varani, M F Bardaro, M Vendrucolo |
30049 | 2016-06-06 | Chemical Shifts: 2 sets |
Excited state (Bound-like) sampled during RDC restrained Replica-averaged Metadynamics (RAM) simulations of the HIV-1 TAR complexed with cyclic peptide mimetic of Tat |
Structure of a low-population binding intermediate in protein-RNA recognition
|
A N Borkar, C Camilloni, F A Aprile, G Varani, M F Bardaro, M Vendrucolo |
30046 | 2016-06-06 | Chemical Shifts: 2 sets |
Ground state sampled during RDC restrained Replica-averaged Metadynamics (RAM) simulations of the HIV-1 TAR complexed with cyclic peptide mimetic of Tat |
Structure of a low-population binding intermediate in protein-RNA recognition
|
A N Borkar, C Camilloni, F A Aprile, G Varani, M F Bardaro, M Vendrucolo |
25341 | 2014-12-16 | Chemical Shifts: 2 sets Spectral_peak_list: 4 sets |
Backbone assignments for human Cyclophilin C |
Structure and Dynamics of GeoCyp: A Thermophilic Cyclophilin with a Novel Substrate Binding Mechanism That Functions Efficiently at Low Temperatures
|
Carlo Camilloni, Elan Z Eisenmesser, Fengli Zhang, Geoffrey S Armstrong, Michael J Holliday, Michele Vendruscolo, Nancy G Isern |
25339 | 2014-12-16 | Chemical Shifts: 1 set Spectral_peak_list: 2 sets |
Backbone amide assignments for human Cyclophilin C with saturating concentrations of the model peptide GSFGPDLRAGD |
Structure and Dynamics of GeoCyp: A Thermophilic Cyclophilin with a Novel Substrate Binding Mechanism That Functions Efficiently at Low Temperatures
|
Carlo Camilloni, Elan Z Eisenmesser, Fengli Zhang, Geoffrey S Armstrong, Michael J Holliday, Michele Vendruscolo, Nancy G Isern |