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首页> 外文期刊>Biochemistry >Different Effects of Identical Symmetry-Related Mutations near the Bacteriochlorophyll Dimer in the Photosynthetic Reaction Center of Rhodobacter sphaeroides
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Different Effects of Identical Symmetry-Related Mutations near the Bacteriochlorophyll Dimer in the Photosynthetic Reaction Center of Rhodobacter sphaeroides

机译:球形球形红细菌光合反应中心细菌叶绿素二聚体附近相同对称相关突变的不同影响

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In the bacterial photosynthetic reaction center (RC), asymmetric protein environment of the bacteriochlorophyll (BChl) dimer largely determines the photophysical and photochemical properties of the primary electron donor. Previously, we noticed significant differences in properties of Rhodobacter sphaeroides RCs with identical mutations in symmetry-related positions - I(M206)H and I(L177)H. The substitution I(L177) H resulted in covalent binding of BChl P-A with the L-sub-unit, as well as in 6-coordination of BChl B-B, whereas in RC I(M206) H no such changes of pigment-protein interactions were found. In addition, the yield of RC I(M206) H after its isolation from membranes was significantly lower than the yield of RC I(L177) H. This study shows that replacement of amino acid residues in the M203-M206 positions near BChls P-B and BA by symmetry-related residues from the L-subunit near BChls P-A and B-B leads to further decrease in RC amount in the membranes associated obviously with poor assembly of the complex. Introduction of a new hydrogen bond between BChl P-B and its protein environment by means of the F(M197)H mutation stabilized the mutant RC but did not affect its low yield. We suggest that the mutation I(M206) H and substitution of amino acid residues in M203-M205 positions could disturb glycolipid binding on the RC surface near BChl BA that is important for stable assembly of the complex in the membrane.
机译:在细菌光合作用反应中心(RC)中,细菌叶绿素(BChl)二聚体的不对称蛋白质环境在很大程度上决定了一次电子供体的光物理和光化学性质。以前,我们注意到对称性相关位置(I(M206)H和I(L177)H)具有相同突变的球形球形红细菌RCs的性能存在显着差异。取代I(L177)H导致BChl PA与L亚基共价结合,以及BChl BB的6配位,而在RC I(M206)H中,色素-蛋白质相互作用没有这种变化找到了。此外,RC I(M206)H从膜中分离后的产量显着低于RC I(L177)H的产量。这项研究表明,替换BChls PB和来自BChls PA和BB附近L亚基的对称相关残基的BA导致膜中RC含量的进一步降低,这显然与复合物的不良组装有关。通过F(M197)H突变在BChl P-B及其蛋白环境之间引入新的氢键,可稳定突变RC,但不影响其低产率。我们建议突变I(M206)H和M203-M205位置中的氨基酸残基的取代可能会干扰BChl BA附近RC表面上的糖脂结合,这对于复合物在膜中的稳定组装很重要。

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