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
25440 Chemical Shifts: 2 sets
1H and 113Cd chemical shift assignments for the cysteins and metals of Bud31p Cd3 113 Cd NMR Experiments Reveal an Unusual Metal Cluster in the Solution Structure of the Yeast Splicing Protein Bud31p Download bibtex for citation iamge Anne-Marie M van Roon, Daniel Mathieu, David Neuhaus, Ji-Chun Yang, Kiyoshi Nagai, Wolfgang Bermel
25439 Chemical Shifts: 1 set
Solution structure and 1H, 13C, and 15N chemical shift assignments for Bud31p 113 Cd NMR Experiments Reveal an Unusual Metal Cluster in the Solution Structure of the Yeast Splicing Protein Bud31p Download bibtex for citation iamge Anne-Marie M van Roon, Daniel Mathieu, David Neuhaus, Ji-Chun Yang, Kiyoshi Nagai, Wolfgang Bermel
15644 Chemical Shifts: 1 set
1H, 15N and 13C chemical shift assignments for Rds3 protein Solution structure of the U2 snRNP protein Rds3p reveals a knotted zinc-finger motif Download bibtex for citation iamge Andrew J Newman, Anne-Marie M van Roon, David Neuhaus, Eiji Obayashi, Helena Hernandez, Ji-Chun Yang, Kiyoshi Nagai, Nikolaus M Loening
6690 Chemical Shifts: 1 set
Partial 1H, 13C, and 15N Chemical Shift Assignments for PSI AB box region in complex with U1-70k protein proline-rich peptide Structural Basis of the Interaction Between P-element Somatic Inhibitor and U1-70k Essential for the Alternative Splicing of P-element Transposase Download bibtex for citation iamge David Neuhaus, Ji-Chun Yang, Jonathan Butler, Kiyoshi Nagai, Tijana Ignjatovic
6691 Chemical Shifts: 1 set
Partial 1H, 13C, and 15N Chemical Shift Assignments for PSI AB box region in complex with U1-70k protein proline-rich peptide Structural Basis of the Interaction Between P-element Somatic Inhibitor and U1-70k Essential for the Alternative Splicing of P-element Transposase. Download bibtex for citation iamge David Neuhaus, Ji-Chun Yang, Jonathan Butler, Kiyoshi Nagai, Tijana Ignjatovic
6097 Chemical Shifts: 1 set
Proton chemical shift assignments for human spliceosomal protein U1C zinc finger domain The structure and biochemical properties of the human spliceosomal protein U1C Download bibtex for citation iamge Carol V Robinson, Chris Oubridge, Daniel Pomeranz Krummel, David Neuhaus, Helena Hernandez, Kiyoshi Nagai, Yutaka Muto
2712 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue
780 Chemical Shifts: 1 set
Sequence-specific [1H]NMR resonance assignments and secondary structure identification for 1- and 2-zinc finger constructs from SWI5 A hydrophobic core involving four invariant residues Sequence-specific [1H]NMR resonance assignments and secondary structure identification for 1- and 2-zinc finger constructs from SWI5 A hydrophobic core involving four invariant residues Download bibtex for citation iamge Aaron Klug, David Neuhaus, Kiyoshi Nagai, Yukinobu Nakaseko
781 Chemical Shifts: 1 set
Sequence-specific [1H]NMR resonance assignments and secondary structure identification for 1- and 2-zinc finger constructs from SWI5 A hydrophobic core involving four invariant residues Sequence-specific [1H]NMR resonance assignments and secondary structure identification for 1- and 2-zinc finger constructs from SWI5 A hydrophobic core involving four invariant residues Download bibtex for citation iamge Aaron Klug, David Neuhaus, Kiyoshi Nagai, Yukinobu Nakaseko
2707 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue
2708 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue
2709 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue
2710 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue
2711 Chemical Shifts: 1 set
Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Proton Magnetic Resonance Investigation of the Influence of Quaternary Structure on Iron-Histidine Bonding in Deoxyhemoglobins Download bibtex for citation iamge Gerd N La Mar, H Franklin Bunn, Kiyoshi Nagai, Thomas Jue