Identification of amino acid residues in a proton release pathway near the bacteriochlorophyll dimer in reaction centers from Rhodobacter sphaeroides

被引:0
作者
J. P. Allen
K. D. Chamberlain
J. C. Williams
机构
[1] Arizona State University,School of Molecular Sciences
来源
Photosynthesis Research | 2023年 / 155卷
关键词
Photosynthesis; Purple bacteria; Proton transfer; Proton-coupled electron transfer; Optical spectroscopy;
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摘要
Insight into control of proton transfer, a crucial attribute of cellular functions, can be gained from investigations of bacterial reaction centers. While the uptake of protons associated with the reduction of the quinone is well characterized, the release of protons associated with the oxidized bacteriochlorophyll dimer has been poorly understood. Optical spectroscopy and proton release/uptake measurements were used to examine the proton release characteristics of twelve mutant reaction centers, each containing a change in an amino acid residue near the bacteriochlorophyll dimer. The mutant reaction centers had optical spectra similar to wild-type and were capable of transferring electrons to the quinones after light excitation of the bacteriochlorophyll dimer. They exhibited a large range in the extent of proton release and in the slow recovery of the optical signal for the oxidized dimer upon continuous illumination. Key roles were indicated for six amino acid residues, Thr L130, Asp L155, Ser L244, Arg M164, Ser M190, and His M193. Analysis of the results points to a hydrogen-bond network that contains these residues, with several additional residues and bound water molecules, forming a proton transfer pathway. In addition to proton transfer, the properties of the pathway are proposed to be responsible for the very slow charge recombination kinetics observed after continuous illumination. The characteristics of this pathway are compared to proton transfer pathways near the secondary quinone as well as those found in photosystem II and cytochrome c oxidase.
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页码:23 / 34
页数:11
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共 238 条
[1]  
Agmon N(1995)The Grotthuss mechanism Chem Phys Lett 244 456-462
[2]  
Allen JP(2011)The evolutionary pathway from anoxygenic to oxygenic photosynthesis examined by comparison of the properties of photosystem II and bacterial reaction centers Photosynth Res 107 59-69
[3]  
Williams JC(2003)Characterization of a semi-stable, charge-separated state in reaction centers from Photosynth Res 75 223-233
[4]  
Andréasson U(2005)The structure and function of the cytochrome Photosynth Res 85 101-114
[5]  
Andréasson LE(2000): reaction center electron transfer complex from Biochim Biophys Acta 1460 75-94
[6]  
Axelrod HL(1996)Protonation reactions and their coupling in bacteriorhodopsin J Phys Chem 100 13148-13168
[7]  
Okamura MY(2018)Contemporary issues in electron transfer research Biochim Biophys Acta 1859 997-1005
[8]  
Balashov SP(2011)Network analysis of a proposed exit pathway for protons to the P-side of cytochrome Biochemistry 50 340-348
[9]  
Barbara PF(2011) oxidase Biochemistry 50 3321-3331
[10]  
Meyer TJ(2006)Light-induced conformational changes in photosynthetic reaction centers: dielectric relaxation in the vicinity of the dimer Biophys J 91 927-937