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
30194 Chemical Shifts: 1 set
Solution Structure of the C-terminal multimerization domain of the master biofilm-regulator SinR from Bacillus subtilis The Solution Structures and Interaction of SinR and SinI: Elucidating the Mechanism of Action of the Master Regulator Switch for Biofilm Formation in Bacillus subtilis Download bibtex for citation iamge Andrew L Olson, Benjamin G Bobay, Daniel B Kearns, Erik A Feldmann, G Logan L Draughn, John Cavanagh, Katherine H Myers, Michael T Santoro, Morgan E Milton, Richele J Thompson, Sean D Stowe
30193 Chemical Shifts: 1 set
Solution Structure of the N-terminal DNA-binding domain of the master biofilm-regulator SinR from Bacillus subtilis The Solution Structures and Interaction of SinR and SinI: Elucidating the Mechanism of Action of the Master Regulator Switch for Biofilm Formation in Bacillus subtilis Download bibtex for citation iamge Andrew L Olson, Benjamin G Bobay, Daniel B Kearns, Erik A Feldmann, G Logan L Draughn, John Cavanagh, Katherine H Myers, Michael T Santoro, Morgan E Milton, Richele J Thompson, Sean D Stowe
30192 Chemical Shifts: 1 set
Solution Structure of SinI, antagonist to the master biofilm-regulator SinR in Bacillus subtilis The Solution Structures and Interaction of SinR and SinI: Elucidating the Mechanism of Action of the Master Regulator Switch for Biofilm Formation in Bacillus subtilis Download bibtex for citation iamge Andrew L Olson, Benjamin G Bobay, Daniel B Kearns, Erik A Feldmann, G Logan L Draughn, John Cavanagh, Katherine H Myers, Michael T Santoro, Morgan E Milton, Richele J Thompson, Sean D Stowe
19008 Chemical Shifts: 1 set
Chemical Shift Assignments for SinR from Bacillus subtilis Chemical shift assignments and secondary structure prediction of the master biofilm regulator, SinR, from Bacillus subtilis. Download bibtex for citation iamge Andrew L Olson, John Cavanagh, Richard Losick, Sean D Stowe
19006 Chemical Shifts: 1 set
1H, 13C and 15N backbone and side chain resonance assignment of the phosphorelay protein VanU from Vibrio anguillarum Chemical shift assignments and secondary structure prediction of the phosphorelay protein VanU from Vibrio anguillarum. Download bibtex for citation iamge Benjamin G Bobay, Debra L Milton, John Cavanagh, Richele J Thompson
18849 Chemical Shifts: 1 set
Chemical shift assignments and secondary structure prediction of the C-terminal domain of the response regulator BfmR from Acinetobacter baumannii Chemical shift assignments and secondary structure prediction of the C-terminal domain of the response regulator BfmR from Acinetobacter baumannii. Download bibtex for citation iamge Andrew L Olson, Christian Melander, John Cavanagh, Richele J Thompson
18753 Chemical Shifts: 1 set
Structure of the biofilm matrix promoter AbbA from B. subtilis Structure of the biofilm matrix promoter AbbA from B. subtilis Download bibtex for citation iamge Allison V Banse, Andrew L Olson, Ashley T Tucker, Benjamin G Bobay, John Cavanagh, Kristen M Varney, Richard Losick, Richele J Thompson
17650 Chemical Shifts: 1 set
1H, 13C, and 15N resonance assignments and secondary structure prediction of the full-length transition state regulator AbrB from Bacillus anthracis (1)H, (13)C, and (15)N resonance assignments and secondary structure prediction of the full-length transition state regulator AbrB from Bacillus anthracis. Download bibtex for citation iamge Andrew L Olson, Benjamin G Bobay, Christian Melander, John Cavanagh
16636 Chemical Shifts: 1 set
NMR solution structure of the DNA binding domain of Competence protein A NMR solution structure and DNA-binding model of the DNA-binding domain of competence protein A. Download bibtex for citation iamge Benjamin G Bobay, Carey A Hobbs, John Cavanagh, Marta Perego, Richele J Thompson
11034 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for N-terminal DNA Recognition Domain of the Bacillus subtilis transition-state regulator SpoVT Insights into the nature of DNA-binding of AbrB-like transcription factors Download bibtex for citation iamge Benjamin G Bobay, Daniel M Sullivan, Douglas J Kojetin, John Cavanagh, Mark A Strauch, Mark Rance, Richele J Thompson
15383 Chemical Shifts: 1 set
1H, 13C, and 15N Chemical Shift Assignments for the N-domain of Bacillus subtilis ClpC NMR assignment of the N-terminal repeat domain of Bacillus subtilis ClpC Download bibtex for citation iamge Douglas J Kojetin, John Cavanagh, Mark Rance, Patrick D McLaughlin, Richele J Thompson, Ronald A Venters
15008 Chemical Shifts: 1 set
Backbone and Side Chain 1H, 13C and 15N Chemical Shift Assignments for Sporulation Phosphotransferase F Mutant H101A Predominantly buried residues in the response regulator Spo0F influence specific sensor kinase recognition Download bibtex for citation iamge Benjamin G Bobay, Erin J Regel, James A Hoch, John Cavanagh, Patrick D McLaughlin, Richele J Thompson
15011 Chemical Shifts: 1 set
Backbone and Side Chain 1H, 13C and 15N Chemical Shift Assignments for Sporulation phosphotransferase F mutant Y13A Predominantly buried residues in the response regulator Spo0F influence specific sensor kinase recognition Download bibtex for citation iamge Benjamin G Bobay, Erin J Regel, James A Hoch, John Cavanagh, Patrick D McLaughlin, Richele J Thompson
15010 Chemical Shifts: 1 set
Backbone and Side Chain 1H, 13C and 15N Chemical Shift Assignments for Sporulation phosphotransferase F mutant L66A Predominantly buried residues in the response regulator Spo0F influence specific sensor kinase recognition Download bibtex for citation iamge Benjamin G Bobay, Erin J Regel, James A Hoch, John Cavanagh, Patrick D McLaughlin, Richele J Thompson
15009 Chemical Shifts: 1 set
Backbone and Side Chain 1H, 13C, 15N Chemical Shift Assignments for Sporulation Phosphotransferase F Mutant I90A Predominantly buried residues in the response regulator Spo0F influence specific sensor kinase recognition Download bibtex for citation iamge Benjamin G Bobay, Erin J Regel, James A Hoch, John Cavanagh, Patrick D McLaughlin, Richele J Thomspon
6826 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for N-terminal DNA recognition domain of the Bacillus subtilis of the transcription-state regulator Abh NMR structure of AbhN and comparison with AbrBN: First insights into the DNA-binding promiscuity and specificity of AbrB-like transition-state regulator proteins Download bibtex for citation iamge Alexey G Murzin, Benjamin G Bobay, Geoffery A Mueller, John Cavanagh, Mark A Strauch, Richele J Thompson, Ronald A Venters
6147 Chemical Shifts: 1 set
1H, 15N, and 13C chemical shift assignments of the Vibrio Harveyi histidine phosphotransferase protein LuxU 1H, 15N, and 13C chemical shift assignments of the Vibrio Harveyi histidine phosphotransferase protein LuxU Download bibtex for citation iamge Bonnie Bassler, Dagny L Ulrich, John Cavanagh, J P Loria, Richele Thompson
4281 Chemical Shifts: 1 set
Backbone and Side Chain 1H, 13C, and 15N Chemical Shift Assignments for AbrBN Revised structure of the AbrB N-terminal domain unifies a diverse superfamily of putative DNA-binding proteins Download bibtex for citation iamge Alexey G Murzin, Antonina Andreeva, Benjamin G Bobay, Geoffrey A Mueller, John Cavanagh
420 Chemical Shifts: 1 set
Complete assignment of the 1H NMR spectrum of a synthetic zinc finger from Xfin Sequential resonance assignments and secondary structure Complete assignment of the 1H NMR spectrum of a synthetic zinc finger from Xfin Sequential resonance assignments and secondary structure Download bibtex for citation iamge John Cavanagh, Min S Lee, Peter E Wright
1663 Chemical Shifts: 1 set
Polypeptide Backbone Resonance Assignments and Secondary Structure of Bacillus subtilis Enzyme III(glc) Determined by Two-Dimensional and Three-Dimensional Heteronuclear NMR Spectroscopy Polypeptide Backbone Resonance Assignments and Secondary Structure of Bacillus subtilis Enzyme III(glc) Determined by Two-Dimensional and Three-Dimensional Heteronuclear NMR Spectroscopy Download bibtex for citation iamge Arthur G Palmer, H J Dyson, John Cavanagh, Jonathan Reizer, MIlton H Saier, Peter E Wright, Sarah L Sutrina, Wayne J Fairbrother