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      Spectral tuning of chlorophylls in proteins – electrostatics vs. ring deformation

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          Abstract

          Electrostatic interactions with the protein control the spectral tuning of chlorophyll.

          Abstract

          In photosynthetic complexes, tuning of chlorophyll light-absorption spectra by the protein environment is crucial to their efficiency and robustness. Recombinant type II water soluble chlorophyll-binding proteins from Brassicaceae (WSCPs) are useful for studying spectral tuning mechanisms due to their symmetric homotetramer structure, and the ability to rigorously modify the chlorophyll's protein surroundings. Our previous comparison of the crystal structures of two WSCP homologues suggested that protein-induced chlorophyll ring deformation is the predominant spectral tuning mechanism. Here, we implement a more rigorous analysis based on hybrid quantum mechanics and molecular mechanics calculations to quantify the relative contributions of geometrical and electrostatic factors to the absorption spectra of WSCP–chlorophyll complexes. We show that when considering conformational dynamics, geometry distortions such as chlorophyll ring deformation accounts for about one-third of the spectral shift, whereas the direct polarization of the electron density accounts for the remaining two-thirds. From a practical perspective, protein electrostatics is easier to manipulate than chlorophyll conformations, thus, it may be more readily implemented in designing artificial protein–chlorophyll complexes.

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          Density-functional thermochemistry. III. The role of exact exchange

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            Comparison of simple potential functions for simulating liquid water

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              Particle mesh Ewald: An N⋅log(N) method for Ewald sums in large systems

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                Author and article information

                Contributors
                Journal
                PPCPFQ
                Physical Chemistry Chemical Physics
                Phys. Chem. Chem. Phys.
                Royal Society of Chemistry (RSC)
                1463-9076
                1463-9084
                March 25 2021
                2021
                : 23
                : 11
                : 6544-6551
                Affiliations
                [1 ]Fritz Haber Centre for Molecular Dynamics Research
                [2 ]Institute of Chemistry
                [3 ]Hebrew University of Jerusalem
                [4 ]Israel
                [5 ]MIGAL – Galilee Research Institute
                [6 ]S. Industrial Zone
                [7 ]Kiryat Shmona
                [8 ]Faculty of Sciences and Technology
                Article
                10.1039/D0CP06582J
                33690760
                443fa816-2389-482d-8830-1e46e8ba1b92
                © 2021

                http://rsc.li/journals-terms-of-use

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