Transient binding of plastocyanin to its physiological redox partners modifies the copper site geometry |
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Authors: | Díaz-Moreno Irene Díaz-Quintana Antonio Díaz-Moreno Sofía Subías Gloria De la Rosa Miguel A |
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Affiliation: | Instituto de Bioquímica Vegetal y Fotosíntesis, Universidad de Sevilla y Consejo Superior de Investigaciones Científicas, Américo Vespucio 49, 41092 Sevilla, Spain. irene.diazmoreno@nimr.mrc.ac.uk |
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Abstract: | The transient complexes of plastocyanin with cytochrome f and photosystem I are herein used as excellent model systems to investigate how the metal sites adapt to the changes in the protein matrix in transient complexes that are involved in redox reactions. Thus, both complexes from the cyanobacterium Nostoc sp. PCC 7119 (former Anabaena sp. PCC 7119) have been analysed by X-ray absorption spectroscopy. Our data are consistent with a significant distortion of the trigonal pyramidal geometry of the Cu coordination sphere when plastocyanin binds to cytochrome f, no matter their redox states are. The resulting tetrahedral geometry shows a shortening of the distance between Cu and the S(delta) atom of its ligand Met-97, with respect to the crystallographic structure of free plastocyanin. On the other hand, when plastocyanin binds to photosystem I instead of cytochrome f, the geometric changes are not significant but a displacement in charge distribution around the metal centre can be observed. Noteworthy, the electronic density around the Cu atom increases or decreases when oxidised plastocyanin binds to cytochrome f or photosystem I, respectively, thus indicating that the protein matrix affects the electron transfer between the two partners during their transient interaction. |
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Keywords: | Cf, water-soluble fragment of cytochrome f ET, electron transfer EXAFS, extended x-ray absorption fine structure FT, Fourier transform HOMO, highest occupied molecular orbital NIR, nitrite reductase Pc, plastocyanin PSI, photosystem I PSIHg, Hg-containing photosystem I XANES, X-ray absorption near edge structure XAS, X-ray absorption spectroscopy XRD, X-ray diffraction ΔE0, internal potential correction Δr, change in the distance between the metal and ligand atoms σ, Debye-Waller parameter related to the system dynamic disorder |
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