The Journal of Physical Chemistry B · 2014 · 34 citations · 32 references
EngineeringExcitation Energy TransferCharge-transfer CharacterChemistryElectronic Excited StateAggregated LhciiPhotoelectrochemistryPhotocatalysisCharge SeparationPhotosynthesisPhotophysical PropertyBiophysicsPhysicsPhotochemistryPhotosystemsMechanistic PhotochemistryPhysical ChemistryQuantum ChemistryComplex IiTrimeric LhciiNatural SciencesSpectroscopyApplied PhysicsLight Absorption
One of the key functions of the major light harvesting complex II (LHCII) of higher plants is to protect Photosystem II from photodamage at excessive light conditions in a process called "non-photochemical quenching" (NPQ). Using hole-burning (HB) spectroscopy, we investigated the nature of the low-energy absorption band in aggregated LHCII complexes - which are highly quenched and have been established as a good in vitro model for NPQ. Nonresonant holes reveal that the lowest energy state (located near 683.3 nm) is red-shifted by ~4 nm and significantly broader (by a factor of 4) as compared to nonaggregated trimeric LHCII. Resonant holes burned in the low-energy wing of the absorption spectrum (685-710 nm) showed a high electron-phonon (el-ph) coupling strength with a Huang-Rhys factor S of 3-4. This finding combined with the very low HB efficiency in the long-wavelength absorption tail is consistent with a dominant charge-transfer (CT) character of the lowest energy transition(s) in aggregated LHCII. The value of S decreases at shorter wavelengths (<685 nm), in agreement with previous studies (J. Pieper et al., J. Phys. Chem. B 1999, 103, 2422-2428), proving that the low-energy excitonic state is strongly mixed with the CT states. Our findings support the mechanistic model in which Chl-Chl CT states formed in aggregated LHCII are intermediates in the efficient excited state quenching process (M. G. Müller et al., Chem. Phys. Chem. 2010, 11, 1289-1296; Y. Miloslavina et al., FEBS Lett. 2008, 582, 3625-3631).
32
Crystal structure of spinach major light-harvesting complex at 2.72 Å resolution
Zhenfeng Liu, Hanchi Yan, Kebin Wang et al. · Nature · 2004 · 1.7K citations
A pigment-binding protein essential for regulation of photosynthetic light harvesting
Xiaoping Li, Olle Björkman, Connie Shih et al. · Nature · 2000 · 1.5K citations
Identification of a mechanism of photoprotective energy dissipation in higher plants
Alexander V. Ruban, Rudi Berera, Cristian Ilioaia et al. · Nature · 2007 · 919 citations · Full text
Photoinhibition and Zeaxanthin Formation in Intact Leaves
Barbara Demmig, Klaus Winter, Almuth Krüger et al. · PLANT PHYSIOLOGY · 1987 · 770 citations · Full text
Biology, Photorespiration, Botany +13