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Light harvesting in a fluctuating antenna

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

One of the major players in oxygenic photosynthesis, photosystem II (PSII), exhibits complex multiexponential fluorescence decay kinetics that for decades has been ascribed to reversible charge separation taking place in the reaction center (RC). However, in this description the protein dynamics is not taken into consideration. The intrinsic dynamic disorder of the light-harvesting proteins along with their fluctuating dislocations within the antenna inevitably result in varying connectivity between pigment–protein complexes and therefore can also lead to nonexponential excitation decay kinetics. On the basis of this presumption, we propose a simple conceptual model describing excitation diffusion in a continuous medium and accounting for possible variations of the excitation transfer rates. Recently observed fluorescence kinetics of PSII of different sizes are perfectly reproduced with only two adjustable parameters instead of the many decay times and amplitudes required in standard analysis procedures; no charge recombination in the RC is required. The model is also able to provide valuable information about the structural and functional organization of the photosynthetic antenna and in a straightforward way solves various contradictions currently existing in the literature.
Original languageEnglish
Pages (from-to)8963-8972
JournalJournal of the American Chemical Society
Volume136
Issue number25
DOIs
Publication statusPublished - 2014

Keywords

  • excitation-energy transfer
  • photosystem-ii supercomplexes
  • thylakoid membrane
  • charge separation
  • crystal-structure
  • photosynthetic systems
  • photoprotective mode
  • lhcii complex
  • fluorescence
  • annihilation

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