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29XZ

Cryo-EM structure of Rhodobacter capsulatus cytochrome bc1 dimer at 2.16 A resolution with water molecules and quinone in the quinone reduction site

Summary for 29XZ
Entry DOI10.2210/pdb29xz/pdb
EMDB information57440
DescriptorUbiquinol-cytochrome c reductase iron-sulfur subunit, Cytochrome b, Cytochrome c1, ... (9 entities in total)
Functional Keywordsoxidoreductuse, proton pumping, quinol oxidation, respiration, electron transport
Biological sourceRhodobacter capsulatus SB 1003
More
Total number of polymer chains6
Total formula weight206436.82
Authors
Pietras, R.,Mielecki, B.,Wojcik-Augustyn, A.,Sarewicz, M.,Jaciuk, M.,Koziej, L.,Glatt, S.,Osyczka, A. (deposition date: 2026-04-14, release date: 2026-09-09)
Primary citationPietras, R.,Wojcik-Augustyn, A.,Mielecki, B.,Sarewicz, M.,Jaciuk, M.,Koziej, L.,Glatt, S.,Osyczka, A.
Distinct ubiquinone binding at the oxidation and reduction sites of cytochrome bc 1.
Proc.Natl.Acad.Sci.USA, 123:e2618242123-e2618242123, 2026
Cited by
PubMed Abstract: The function of cytochrome bc, a widespread energy-conserving enzyme, requires the coordinated activity of two quinone-binding sites (Q catalyzing oxidation of ubiquinol and Q catalyzing reduction of ubiquinone). The operation of Q, but not Q, involves large-scale movement of the head domain of iron-sulfur protein (ISP-HD). How the respective sites accommodate quinone molecules for efficient catalysis remains elusive. Here, we present high-resolution cryoelectron microscopy structures of bacterial cytochrome bc with native ubiquinone molecules in various states. They show that the quinone headgroup occupies a catalytically competent position in Q only when the ISP-HD interacts with cytochrome b. When the ISP-HD does not interact with this subunit, quinone is present in the hydrophobic groove, however its headgroup is prevented from reaching the catalytic cavity by steric hindrance. In this state, the position of quinone headgroup is clearly not fixed. In contrast, all structures show Q in the same state with a well-resolved and catalytically competent quinone headgroup, but with its tail not fixed. These distinctly different ubiquinone binding modes for Q and Q secure the smooth operation of cytochrome bc.
PubMed: 42679026
DOI: 10.1073/pnas.2618242123
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (2.16 Å)
Structure validation

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