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Reaction centers from three herbicide resistant mutants of Rhodobacter sphaeroides 2.4.1: Kinetics of electron transfer reactions
Authors:Mark L Paddock  George Feher  Melvin Y Okamura
Institution:(1) Department of Physics, B-019, University of California, San Diego, 92093 La Jolla, CA, USA
Abstract:Electron transfer rates were measured in RCs from three herbicide-resistant mutants with known amino acid changes to elucidate the structural requirements for last electron transfer. The three herbicide resistant mutants were IM(L229) (Ile-L229map Met), SP(L223) (Ser-L223map Pro) and YG(L222) (Tyr-L222map Gly). The electron transfer rate D+QA -QBmapD+QAQB (k AB) is slowed sim3 fold in the IM(L229) and YG(L222) RCs (pH 8). The stabilization of D+QAQB - with respect to D+QAQB - (pH 8) was found to be eliminated in the IM(L229) mutant RCs (DeltaG0 sim 0 meV), was partially reduced in the SP(L223) mutant RCs (DeltaG0=–30 meV), and was unaltered in the YG(L222) mutant RCs (DeltaG0=–60 meV), compared to that observed in the native RCs (DeltaG0=–60 meV). The pH dependences of the charge recombination rate D+QAQB -mapDQAQB (k BD) and the electron transfer from QA - (k QA -mapQA) suggest that the mutations do not affect the protonation state of Glu-L212 nor the electrostatic interactions of QB and QB - with Glu-L212. The binding affinities of UQ10 for the QB site were found in order of decreasing values to be native geIM(L229) > YG(L222)ge SP(L223). The altered properties of the mutant RCs are used to deduce possible structural changes caused by the mutations and are dicscussed in terms of photosynthetic efficiency of the herbicide resistant strains.Abbreviations Bchl bacteriochlorophyll - Bphe bacteriopheophytin - cholate 3agr,7agr,12agr-trihydroxycholanic acid - D donor (bacteriochlorophyll dimer) - EDTA ethylenediamine tetraacetic acid - Fe2+ non-heme iron atom - LDAO lauryl dimethylamine oxide - PS II photosystem II - QA and QB primary and secondary quinone acceptors - RC bacterial reaction center - Tris tris(hydroxymethyl)aminomethane - UQ0 2,3-dimethoxy-5-methyl benzoquinone - UQ10 ubiquinone 50
Keywords:herbicide resistance  electron transfer  photosynthetic efficiency  reaction center  bacterial photosynthesis
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