Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
30960 | 2022-05-11 | Chemical Shifts: 1 set Spectral_peak_list: 3 sets |
Solution NMR Structure of Immunoglobulin-like Domain of Human Neuregulin-1 |
Validated determination of NRG1 Ig-like domain structure by mass spectrometry coupled with computational modeling
|
A Eletsky, C K Mobley, J H Prestegard, J S Sharp, M J Rogals, N A Khaje, S E Biehn, S Lindert, S Mishra, Y Kim |
50368 | 2021-03-22 | Chemical Shifts: 1 set |
hCEACAM1 N-terminal IgV domain |
Structural basis of the dynamic human CEACAM1 monomer-dimer equilibrium
|
Amit K Gandhi, Daniel A Bonsor, Eric J Sundberg, Gregory A Petsko, Richard S Blumberg, Vijay K Kuchroo, Walter M Kim, Yasuyuki Kondo, Yu-Hwa Huang, Zhen-Yu J Sun |
50366 | 2021-03-22 | Chemical Shifts: 1 set |
hCEACAM1 N-terminal IgV domain N97A mutant |
Structural basis of the dynamic human CEACAM1 monomer-dimer equilibrium
|
Amit K Gandhi, Daniel A Bonsor, Eric J Sundberg, Gregory A Petsko, Richard S Blumberg, Vijay K Kuchroo, Walter M Kim, Yasuyuki Kondo, Yu-Hwa Huang, Zhen-Yu J Sun |
30359 | 2018-01-05 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design10.1 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30360 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design10.2 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30361 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design11_ss |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30357 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design8.2 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30358 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design9.1 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30364 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design7.2 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30365 | 2018-01-05 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design7.3a |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30366 | 2018-01-05 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design7.3a |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30362 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design12_ss |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30363 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design14_ss |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30356 | 2017-12-26 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle design7.1 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
30355 | 2018-01-02 | Chemical Shifts: 1 set |
Solution structure of de novo macrocycle Design8.1 |
Comprehensive computational design of ordered peptide macrocycles.
|
D A Silva, D Baker, D E Kim, F Pardo-Avila, G Bhardwaj, G Varani, I K Webb, J N Adkins, J R Cort, M D Shortridge, P Hosseinzadeh, S A Rettie, T W Craven, V K Mulligan, Y M Ibrahim |
36085 | 2018-07-17 | Chemical Shifts: 1 set |
Anti-CRISPR protein AcrIIA4 |
Solution structure and dynamics of anti-CRISPR AcrIIA4, the Cas9 inhibitor.
|
D Ka, E Bae, I Kim, J Y Suh, M Han, M Jeong, N K Kim |
19002 | 2013-03-21 | Chemical Shifts: 1 set |
Solution structure of the Core Domain (11-85) of the Murine Norovirus VPg protein. |
Structures of the Compact Helical Core Domains of Feline Calicivirus and Murine Norovirus VPg Proteins.
|
C Cheng Kao, Chennareddy V Subba-Reddy, Eoin N Leen, Ian G Goodfellow, James R Birtley, Jan Marchant, Joanna C Young, Kim Y Green, K Y Rex Kwok, Liliane MW Chung, Lisa O Roberts, Michael Tong, Peter J Simpson, Sean N Prater, Stanislav V Sosnovtsev, Stephen Curry, Stephen Matthews, Yasmin Chaudhry |
19003 | 2013-03-21 | Chemical Shifts: 1 set |
Solution structure of the Core Domain (10-76) of the Feline Calicivirus VPg protein. |
Structures of the Compact Helical Core Domains of Feline Calicivirus and Murine Norovirus VPg Proteins.
|
C Cheng Kao, Chennareddy V Subba-Reddy, Eoin N Leen, Ian G Goodfellow, James R Birtley, Jan Marchant, Joanna C Young, Kim Y Green, K Y Rex Kwok, Liliane MW Chung, Lisa O Roberts, Michael Tong, Peter J Simpson, Sean N Prater, Stanislav V Sosnovtsev, Stephen Curry, Stephen Matthews, Yasmin Chaudhry |
5624 | 2003-02-28 | Chemical Shifts: 1 set |
A Conserved Structural Motif at the N-terminal of Bacterial Translation Initiation Factor IF2 |
A Conserved Structural Motif at the N-terminal of Bacterial Translation Initiation Factor IF2
|
Brian S Laursen, David W Hoffman, Hans U Sperling-Petersen, Kim K Mortensen |