Litcius/Paper detail

A Protein Environment-Modulated Energy Dissipation Channel in LHCII Antenna Complex

Francesco Saccon, Milan Durchan, David Bína, Christopher D. P. Duffy, Alexander V. Ruban, Tomáš Polı́vka

2020iScience23 citationsDOIOpen Access PDF

Abstract

The major light-harvesting complex of photosystem II (LHCII) is the main contributor to sunlight energy harvesting in plants. The flexible design of LHCII underlies a photoprotective mechanism whereby this complex switches to a dissipative state in response to high light stress, allowing the rapid dissipation of excess excitation energy (non-photochemical quenching, NPQ). In this work, we locked single LHCII trimers in a quenched conformation after immobilization of the complexes in polyacrylamide gels to impede protein interactions. A comparison of their pigment excited-state dynamics with quenched LHCII aggregates in buffer revealed the presence of a new spectral band at 515 nm arising after chlorophyll excitation. This is suggested to be the signature of a carotenoid excited state, linked to the quenching of chlorophyll singlet excited states. Our data highlight the marked sensitivity of pigment excited-state dynamics in LHCII to structural changes induced by the environment.

Topics & Concepts

Non-photochemical quenchingExcited statePhotosystem IILight-harvesting complexQuenching (fluorescence)Chemical physicsChemistryPhotochemistryBiophysicsPhotosynthesisFluorescenceAtomic physicsPhysicsOpticsBiologyBiochemistryPhotosynthetic Processes and MechanismsPhotoreceptor and optogenetics researchLight effects on plants