BMRB

Biological Magnetic Resonance Data Bank


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

BMRB Entry 1571

Title: 1H NMR Study of the Solution Molecular and Electronic Structure of Escherichia coli Ferricytochrome b562: Evidence for S = 1/2 <=> S = 5/2 Spin Equilibrium for Intact His/Met Ligation

Deposition date: 1995-07-31 Original release date: 1999-06-14

Authors: Wu, Jia-zhen; La Mar, Gerd; Yu, Liping; Lee, Kang-Bong; Walker, F.; Chiu, Mark; Sligar, Stephen

Citation: Wu, Jia-zhen; La Mar, Gerd; Yu, Liping; Lee, Kang-Bong; Walker, F.; Chiu, Mark; Sligar, Stephen. "1H NMR Study of the Solution Molecular and Electronic Structure of Escherichia coli Ferricytochrome b562: Evidence for S = 1/2 <=> S = 5/2 Spin Equilibrium for Intact His/Met Ligation"  Biochemistry 30, 2156-2165 (1991).

Assembly members:
cytochrome b562, polymer, 102 residues, Formula weight is not available

Natural source:   Common Name: not available   Taxonomy ID: not available   Superkingdom: not available   Kingdom: not available   Genus/species: not available not available

Experimental source:   Production method: not available   Host organism: Escherichia coli

Entity Sequences (FASTA):
cytochrome b562: XXXXXXMXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXX XH

Data sets:
Data typeCount
1H chemical shifts9

Additional metadata:

  • Assembly
  • Samples and Experiments
  • Software
  • Spectrometers
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Assembly:

Entity Assembly IDEntity NameEntity ID
1cytochrome b5621

Entities:

Entity 1, cytochrome b562 102 residues - Formula weight is not available

1   XXXXXXMETXXX
2   XXXXXXXXXX
3   XXXXXXXXXX
4   XXXXXXXXXX
5   XXXXXXXXXX
6   XXXXXXXXXX
7   XXXXXXXXXX
8   XXXXXXXXXX
9   XXXXXXXXXX
10   XXXXXXXXXX
11   XHIS

Samples:

sample_one:

sample_condition_set_one: pH: 4.76 na; temperature: 298 K

Experiments:

NameSampleSample stateSample conditions

Software:

No software information available

NMR spectrometers:

  • unknown unknown 0 MHz