首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Key role of proline L209 in connecting the distant quinone pockets in the reaction center of Rhodobacter sphaeroides
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Key role of proline L209 in connecting the distant quinone pockets in the reaction center of Rhodobacter sphaeroides

机译:脯氨酸L209在连接球形红球菌反应中心中遥远的醌口袋中的关键作用

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摘要

Photosynthetic bacterial reaction centers convert light excitation into chemical free energy. The initial electron transfer leads to the consecutive semireductions of the primary (QA) and secondary (QB) quinone acceptors. The Q and Q formations induce proton uptake from the bulk. Their magnitudes (H+/Q and H+/Q, respectively) probe the electrostatic interactions within the complex. The pH dependence of H+/Q and H+/Q were studied in five single mutants modified at the L209 site (L209P→F,Y,W,E,T). This residue is situated at the border of a continuous chain of water molecules connecting QB to the bulk. In the wild type (WT), a proton uptake band is present at high pH in the H+/Q and H+/Q curves and is commonly attributed to a cluster of acidic groups situated nearby QB. In the H+/Q curves of the L209 variants, this band is systematically absent but remains in the H+/Q curves. Moreover, notable increase of H+/Q is observed in the L209 mutants at neutral pH as compared with the WT. The large effects observed in all L209 mutants are not associated with significant structural changes (Kuglstatter, A., Ermler, U., Michel, H., Baciou, L. & Fritzsch, G. Biochemistry (2001) 40, 4253–4260). Our data suggest that, in the L209 mutants, the QB cluster does not respond to the Q formation as observed in the WT. We propose that, in the mutants, removal of the rigid proline L209 breaks a necessary hydrogen bonding connection between the quinone sites. These findings suggest an important role for structural rigidity in ensuring a functional interaction between quinone binding sites.
机译:光合细菌反应中心将光激发转化为化学自由能。初始电子转移导致伯(QA)和仲(QB)醌受体连续半还原。 Q和Q的形成引起质子从主体吸收。它们的大小(分别为H + / Q和H + / Q)可探测复合物中的静电相互作用。在L209位点修饰的5个单突变体(L209P→F,Y,W,E,T)中研究了H + / Q和H + / Q的pH依赖性)。此残基位于将QB连接到主体的水分子连续链的边界。在野生型(WT)中,H + / Q和H + / Q曲线在高pH下存在质子吸收带,通常归因于簇位于QB附近的酸性基团。在L209变体的H + / Q曲线中,该条带系统性地不存在,但仍保留在H + / Q曲线中。此外,与野生型相比,在中性pH下的L209突变体中观察到H + / Q显着增加。在所有L209突变体中观察到的大效应与显着的结构变化无关(Kuglstatter,A.,Ermler,U.,Michel,H.,Baciou,L.&Fritzsch,G. Biochemistry(2001)40,4253–4260) 。我们的数据表明,在L209突变体中,QB簇不响应WT中观察到的Q形成。我们建议,在突变体中,去除刚性脯氨酸L209会破坏醌位点之间必要的氢键连接。这些发现表明结构刚性在确保醌结合位点之间的功能相互作用中起着重要作用。

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