BMRB

Biological Magnetic Resonance Data Bank


A Repository for Data from NMR Spectroscopy on Proteins, Peptides, Nucleic Acids, and other Biomolecules
Member of WWPDB

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Entry ID Data summary Entry Title Citation Title Authors
51515 Chemical Shifts: 1 set
Partial assignment of SARS-COV-2 main protease R298A mutant Antiviral cyclic peptides targeting the main protease of SARS-CoV-2. Download bibtex for citation iamge Anneliese S Ashhurst, Anthony J O'Donoghue, Anupriya Aggarwal, Christoph Nitsche, Colin J Jackson, Daniel J Ford, Gottfried Otting, Jason Johansen-Leete, Kasuni B Ekanayake, Mark Larance, Max J Bedding, Mithun C Mahawaththa, Rebecca Frkic, Richard J Payne, Sarah E Fry, Stephanie Luedtke, Stuart Turville, Sven Ullrich, Toby Passioura, Vishnu M Sasi
50143 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
50145 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
50146 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
50148 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
50149 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
50147 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 Download bibtex for citation iamge Daniel J Ford, James L Walshe, Jason Low, Joel P Mackay, Karishma Patel, Lorna Wilkinson-White, Paul D Solomon, Richard J Payne
18953 Chemical Shifts: 1 set
Solution Structure of gammaM7-Crystallin Structure and Dynamics of the Fish Eye Lens Protein, M7-Crystallin. Download bibtex for citation iamge Bryon Mahler, Caleb Thiel, Graeme Wistow, Jason Ford, Yingwei Chen, Zhengrong Wu