Cryo-EM structure of the spinach cytochrome b<sub>6 </sub>f complex at 3.6 Å resolution.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 31723268.
- Also identified by DOI 10.1038/s41586-019-1746-6 and PMC identifier 7617996.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
The cytochrome b<sub>6</sub> f (cytb<sub>6</sub> f ) complex has a central role in oxygenic photosynthesis, linking electron transfer between photosystems I and II and converting solar energy into a transmembrane proton gradient for ATP synthesis<sup>1-3</sup>. Electron transfer within cytb<sub>6</sub> f occurs via the quinol (Q) cycle, which catalyses the oxidation of plastoquinol (PQH<sub>2</sub>) and the reduction of both plastocyanin (PC) and plastoquinone (PQ) at two separate sites via electron bifurcation<sup>2</sup>. In higher plants, cytb<sub>6</sub> f also acts as a redox-sensing hub, pivotal to the regulation of light harvesting and cyclic electron transfer that protect against metabolic and environmental stresses<sup>3</sup>. Here we present a 3.6 Å resolution cryo-electron microscopy (cryo-EM) structure of the dimeric cytb<sub>6</sub> f complex from spinach, which reveals the structural basis for operation of the Q cycle and its redox-sensing function. The complex contains up to three natively bound PQ molecules. The first, PQ1, is located in one cytb<sub>6</sub> f monomer near the PQ oxidation site (Q<sub>p</sub>) adjacent to haem b<sub>p</sub> and chlorophyll a. Two conformations of the chlorophyll a phytyl tail were resolved, one that prevents access to the Q<sub>p</sub> site and another that permits it, supporting a gating function for the chlorophyll a involved in redox sensing. PQ2 straddles the intermonomer cavity, partially obstructing the PQ reduction site (Q<sub>n</sub>) on the PQ1 side and committing the electron transfer network to turnover at the occupied Q<sub>n</sub> site in the neighbouring monomer. A conformational switch involving the haem c<sub>n</sub> propionate promotes two-electron, two-proton reduction at the Q<sub>n</sub> site and avoids formation of the reactive intermediate semiquinone. The location of a tentatively assigned third PQ molecule is consistent with a transition between the Q<sub>p</sub> and Q<sub>n</sub> sites in opposite monomers during the Q cycle. The spinach cytb<sub>6</sub> f structure therefore provides new insights into how the complex fulfils its catalytic and regulatory roles in photosynthesis.
Medical subject headings
- Cryoelectron Microscopy
- Cytochrome b6f Complex
- Spinacia oleracea