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J Phys Chem B ; 115(50): 15098-109, 2011 Dec 22.
Article in English | MEDLINE | ID: mdl-22046956

ABSTRACT

Effects of the distributions of excitation energy transfer (EET) rates (homogeneous line widths) on the nonphotochemical (resonant) spectral hole burning (SHB) processes in photosynthetic chlorophyll-protein complexes (reaction center [RC] and CP43 antenna of Photosystem II from spinach) are considered. It is demonstrated that inclusion of such a distribution results in somewhat more dispersive hole burning kinetics. More importantly, however, inclusion of the EET rate distributions strongly affects the dependence of the hole width on the fractional hole depth. Different types of line width distributions have been explored, including those resulting from Förster type EET between weakly interacting pigments as well as Gaussian ones, which may be a reasonable approximation for those resulting, for instance, from so-called extended Förster models. For Gaussian line width distributions, it is possible to determine the parameters of both line width and tunneling parameter distributions from SHB data without a priori knowledge of any of them. Concerning more realistic asymmetric distributions, we demonstrate, using the simple example of CP43 antenna, that one can use SHB modeling to estimate electrostatic couplings between pigments and support or exclude assignment of certain pigment(s) to a particular state.


Subject(s)
Chlorophyll/metabolism , Energy Transfer , Photosystem II Protein Complex/metabolism , Temperature , Electron Transport , Kinetics , Models, Molecular , Normal Distribution , Photosystem II Protein Complex/chemistry , Protein Conformation , Spinacia oleracea/enzymology
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