Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
30851 | 2022-02-04 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
Aspartimidylated omega ester peptide fuscimiditide |
Biosynthesis and characterization of fuscimiditide, an aspartimidylated graspetide
|
A James J Link, Brian Choi, Hader E Elashal, Heather L White, Joseph D Koos, Li Cao, Michelle A Richardson, Wai Ling L Cheung-Lee |
30849 | 2022-02-04 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
Omega ester peptide pre-fuscimiditide |
Biosynthesis and characterization of fuscimiditide, an aspartimidylated graspetide
|
A James J Link, Brian Choi, Hader E Elashal, Heather L White, Joseph D Koos, Li Cao, Michelle A Richardson, Wai Ling L Cheung-Lee |
34480 | 2020-07-20 | Chemical Shifts: 1 set |
Solution structure of Legionella pneumophila NttA |
Structure, Dynamics and Cellular Insight Into Novel Substrates of the Legionella pneumophila Type II Secretion System
|
Alessandro Pandini, Ian E McIntire, James A Garnett, Jessica Y Tyson, Katherine Richardson, Lee Sewell, Nicholas P Cianciotto, Richard C White, Rosie Shaw, Saima Rehman, Sarath C Dantu, Theo J Portlock |
50147 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the second bromodomain of BRD3 (BRD3-BD2) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
50146 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the second bromodomain of BRD4 (BRD4-BD2) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
50145 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the first bromodomain of BRD4 (BRD4-BD1) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
50143 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the first bromodomain of BRD2 (BRD2-BD1) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
50149 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the second bromodomain of BRD2 (BRD2-BD2) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
50148 | 2021-08-12 | Chemical Shifts: 1 set |
1H, 15N, and 13C backbone chemical shift assignments for the first bromodomain of BRD3 (BRD3-BD1) |
BET-Family Bromodomains Can Recognize Diacetylated Sequences from Transcription Factors Using a Conserved Mechanism
|
Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne |
27437 | 2018-04-23 | Chemical Shifts: 2 sets |
1H, 13CA, 13CB and 15N chemical shift assignments of b2-microglobulin and a-chain of the neonatal Fc receptor |
Insight into Small Molecule Binding to the Neonatal Fc Receptor by X-ray Crystallography and 100 kHz Magic-Angle-Spinning NMR
|
Alastair Lawson, Alex Macpherson, Alistair Henry, Amy H Sullivan, Beat H Meier, Ben Cossins, Christine Prosser, Daniel Stoeppler, David Fox III, Fabien Lecomte, Hartmut Oschkinat, Herv Deboves, James White, John Porter, Katharine Cain, Lorna Waters, Mark Carr, Marta Westwood, Nicolas Basse, Richard D Taylor, Richard Taylor, Robert Griffin, Sebastian Kelm, Susanne Smith-Penzel, Tim Norman |
30368 | 2018-03-14 | Chemical Shifts: 1 set |
Solution NMR structure of Brd3 ET domain bound to Brg1 peptide |
The BRD3 ET domain recognizes a short peptide motif through a mechanism that is conserved across chromatin remodelers and transcriptional regulators
|
Amy E Campbell, Ana Silva, Ann H Kwan, Bin Lu, Cherry Kwong, Christopher R Vakoc, Dorothy Wai, Gerd A Blobel, James D Chalmers, Jason Low, Joel P Mackay, Lorna E Wilkinson-White, Roland Gamsjaeger, Taylor N Szyszka, Wayne M Patrick |
30367 | 2018-03-14 | Chemical Shifts: 1 set Spectral_peak_list: 3 sets |
Solution NMR structures of the BRD3 ET domain in complex with a CHD4 peptide |
The BRD3 ET domain recognizes a short peptide motif through a mechanism that is conserved across chromatin remodelers and transcriptional regulators
|
Amy E Campbell, Ana Silva, Ann H Kwan, Bin Lu, Cherry Kwong, Christopher R Vakoc, Dorothy Wai, Gerd A Blobel, James D Chalmers, Jason Low, Joel P Mackay, Lorna E Wilkinson-White, Roland Gamsjaeger, Taylor N Szyszka, Wayne M Patrick |
4346 | 2000-03-08 | Chemical Shifts: 1 set |
1H, 13C, and 15N Chemical Shift Assignments for the Regulatory mRNA of the Yeast Ribosomal Protein L30 |
A Novel Loop-loop Recognition Motif in the Yeast Ribosomal Protein L30 Autoregulatory RNA Complex
|
Hongyuan Mao, james R Williamson, Susan A White |
4345 | 2000-03-08 | Chemical Shifts: 2 sets |
1H, 13C, and 15N Chemical Shift Assignments for Yeast Ribosomal Protein L30 in Complex with Its mRNA in Solution |
A Novel Loop-loop Recognition Motif in the Yeast Ribosomal Protein L30 Autoregulatory RNA Complex
|
Hongyuan Mao, james R Williamson, Susan A White |