High-resolution cryo-EM structures of plant cytochrome b<sub>6</sub>f at work.

Sarewicz, Marcin; Szwalec, Mateusz; Pintscher, Sebastian; Indyka, Paulina; Rawski, Michał; Pietras, Rafał; Mielecki, Bohun; Koziej, Łukasz et al. · Sci Adv · 2023

basic_science · Level V

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Abstract

Plants use solar energy to power cellular metabolism. The oxidation of plastoquinol and reduction of plastocyanin by cytochrome b<sub>6</sub>f (Cyt b<sub>6</sub>f) is known as one of the key steps of photosynthesis, but the catalytic mechanism in the plastoquinone oxidation site (Q<sub>p</sub>) remains elusive. Here, we describe two high-resolution cryo-EM structures of the spinach Cyt b<sub>6</sub>f homodimer with endogenous plastoquinones and in complex with plastocyanin. Three plastoquinones are visible and line up one after another head to tail near Q<sub>p</sub> in both monomers, indicating the existence of a channel in each monomer. Therefore, quinones appear to flow through Cyt b<sub>6</sub>f 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.

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