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Title | High-resolution cryo-EM structures of plant cytochrome bf at work. |
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Journal, issue, pages | Sci Adv, Vol. 9, Issue 2, Page eadd9688, Year 2023 |
Publish date | Jan 13, 2023 |
Authors | Marcin Sarewicz / Mateusz Szwalec / Sebastian Pintscher / Paulina Indyka / Michał Rawski / Rafał Pietras / Bohun Mielecki / Łukasz Koziej / Marcin Jaciuk / Sebastian Glatt / Artur Osyczka / |
PubMed Abstract | Plants use solar energy to power cellular metabolism. The oxidation of plastoquinol and reduction of plastocyanin by cytochrome bf (Cyt bf) is known as one of the key steps of photosynthesis, but the ...Plants use solar energy to power cellular metabolism. The oxidation of plastoquinol and reduction of plastocyanin by cytochrome bf (Cyt bf) is known as one of the key steps of photosynthesis, but the catalytic mechanism in the plastoquinone oxidation site (Q) remains elusive. Here, we describe two high-resolution cryo-EM structures of the spinach Cyt bf homodimer with endogenous plastoquinones and in complex with plastocyanin. Three plastoquinones are visible and line up one after another head to tail near Q in both monomers, indicating the existence of a channel in each monomer. Therefore, quinones appear to flow through Cyt bf in one direction, transiently exposing the redox-active ring of quinone during catalysis. Our work proposes an unprecedented one-way traffic model that explains efficient quinol oxidation during photosynthesis and respiration. |
External links | Sci Adv / PubMed:36638176 / PubMed Central |
Methods | EM (single particle) |
Resolution | 2.13 - 2.7 Å |
Structure data | EMDB-14123, PDB-7qrm: EMDB-15027, PDB-7zyv: |
Chemicals | ChemComp-HEM: ChemComp-HEC: ChemComp-CLA: ChemComp-PL9: ChemComp-UMQ: ChemComp-PGT: ChemComp-SQD: ChemComp-FES: ChemComp-BCR: |
Source |
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Keywords | PHOTOSYNTHESIS / cytochrome / Spinacia oleracea / plastoquinones / cryo-EM |