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5DJQ

The structure of CBB3 cytochrome oxidase.

Summary for 5DJQ
Entry DOI10.2210/pdb5djq/pdb
Related3MK7
DescriptorCbb3-type cytochrome c oxidase subunit CcoN1, HEME C, HEXACYANOFERRATE(3-), ... (11 entities in total)
Functional Keywordsoxidoreductase, cbb3-cytochrome c oxidase, pseudomonas_stutzeri
Biological sourcePseudomonas stutzeri
More
Cellular locationCell inner membrane ; Multi-pass membrane protein : D9IA43 D9IA45
Total number of polymer chains16
Total formula weight467598.48
Authors
Buschmann, S.,Warkentin, E.,Xie, H.,Kohlstaedt, M.,Langer, J.D.,Ermler, U.,Michel, H. (deposition date: 2015-09-02, release date: 2016-01-13, Last modification date: 2024-11-20)
Primary citationBuschmann, S.,Warkentin, E.,Xie, H.,Langer, J.D.,Ermler, U.,Michel, H.
The structure of cbb3 cytochrome oxidase provides insights into proton pumping.
Science, 329:327-330, 2010
Cited by
PubMed Abstract: The heme-copper oxidases (HCOs) accomplish the key event of aerobic respiration; they couple O2 reduction and transmembrane proton pumping. To gain new insights into the still enigmatic process, we structurally characterized a C-family HCO--essential for the pathogenicity of many bacteria--that differs from the two other HCO families, A and B, that have been structurally analyzed. The x-ray structure of the C-family cbb3 oxidase from Pseudomonas stutzeri at 3.2 angstrom resolution shows an electron supply system different from families A and B. Like family-B HCOs, C HCOs have only one pathway, which conducts protons via an alternative tyrosine-histidine cross-link. Structural differences around hemes b and b3 suggest a different redox-driven proton-pumping mechanism and provide clues to explain the higher activity of family-C HCOs at low oxygen concentrations.
PubMed: 20576851
DOI: 10.1126/science.1187303
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3.2 Å)
Structure validation

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