Single Molecule Fluorescence Spectroscopy of PSI Trimers from <i>Arthrospira platensis</i>: A Computational Approach

Based on single molecule spectroscopy analysis and our preliminary theoretical studies, the linear and fluorescence spectra of the PSI trimer from <i>Arthrospira platensis</i> with different realizations of the static disorder were modeled at cryogenic temperature. Considering the previo...

Full description

Bibliographic Details
Main Authors: Roman Pishchalnikov, Vladimir Shubin, Andrei Razjivin
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:Molecules
Subjects:
PSI
Online Access:https://www.mdpi.com/1420-3049/24/4/822
Description
Summary:Based on single molecule spectroscopy analysis and our preliminary theoretical studies, the linear and fluorescence spectra of the PSI trimer from <i>Arthrospira platensis</i> with different realizations of the static disorder were modeled at cryogenic temperature. Considering the previously calculated spectral density of chlorophyll, an exciton model for the PSI monomer and trimer including the red antenna states was developed taking into account the supposed similarity of PSI antenna structures from <i>Thermosynechococcus e.</i>, <i>Synechocystis sp. PCC6803</i>, and <i>Arthrospira platensis</i>. The red Chls in the PSI monomer were assumed to be in the nearest proximity of the reaction center. The PSI trimer model allowed the simulation of experimentally measured zero phonon line distribution of the red states considering a weak electron-phonon coupling for the antenna exciton states. However, the broad absorption and fluorescence spectra of an individual emitter at 760 nm were calculated by adjusting the Huang-Rhys factors of the chlorophyll lower phonon modes assuming strong electron-phonon coupling.
ISSN:1420-3049