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关于叶绿素a的芳香族残基环境在细胞色素b6f复合物中的结构作用。

On the structural role of the aromatic residue environment of the chlorophyll a in the cytochrome b6f complex.

作者信息

Yan Jiusheng, Dashdorj Naranbaatar, Baniulis Danas, Yamashita Eiki, Savikhin Sergei, Cramer William A

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Biochemistry. 2008 Mar 25;47(12):3654-61. doi: 10.1021/bi702299b. Epub 2008 Feb 27.

Abstract

Because light is not required for catalytic turnover of the cytochrome b 6 f complex, the role of the single chlorophyll a in the structure and function of the complex is enigmatic. Photodamage from this pigment is minimized by its short singlet excited-state lifetime ( approximately 200 ps), which has been attributed to quenching by nearby aromatic residues ( Dashdorj et al., 2005). The crystal structure of the complex shows that the fifth ligand of the chlorophyll a contains two water molecules. On the basis of this structure, the properties of the bound chlorophyll and the complex were studied in the cyanobacterium, Synechococcus sp. PCC 7002, through site-directed mutagenesis of aromatic amino acids in the binding niche of the chlorophyll. The b 6 f complex was purified from three mutant strains, a double mutant Phe133Leu/Phe135Leu in subunit IV and single mutants Tyr112Phe and Trp125Leu in the cytochrome b 6 subunit. The purified b 6 f complex from Tyr112Phe or Phe133Leu/Phe135Leu mutants was characterized by (i) a loss of bound Chl and b heme, (ii) a shift in the absorbance peak and increase in bandwidth, (iii) multiple lifetime components, including one of 1.35 ns, and (iv) relatively small time-resolved absorbance anisotropy values of the Chl Q y band. A change in these properties was minimal in the Trp125Leu mutant. In vivo, no decrease in electron-transport efficiency was detected in any of the mutants. It was concluded that (a) perturbation of its aromatic residue niche influences the stability of the Chl a and one or both b hemes in the monomer of the b 6 f complex, and (b) Phe residues (Phe133/Phe135) of subunit IV are important in maintaining the short lifetime of the Chl a singlet excited state, thereby decreasing the probability of singlet oxygen formation.

摘要

由于催化细胞色素b6f复合体周转不需要光,因此复合体中单个叶绿素a在结构和功能方面的作用仍不清楚。该色素的光损伤因其短的单重激发态寿命(约200皮秒)而降至最低,这归因于附近芳香族残基的淬灭作用(Dashdorj等人,2005年)。复合体的晶体结构表明,叶绿素a的第五个配体包含两个水分子。基于此结构,通过对叶绿素结合位点的芳香族氨基酸进行定点诱变,在蓝藻集胞藻PCC 7002中研究了结合态叶绿素和复合体的性质。从三个突变菌株中纯化出b6f复合体,分别是IV亚基中的双突变体Phe133Leu/Phe135Leu以及细胞色素b6亚基中的单突变体Tyr112Phe和Trp125Leu。来自Tyr112Phe或Phe133Leu/Phe135Leu突变体的纯化b6f复合体具有以下特征:(i)结合态叶绿素和b血红素缺失;(ii)吸收峰发生位移且带宽增加;(iii)多个寿命成分,包括一个1.35纳秒的成分;(iv)叶绿素Qy带的时间分辨吸收各向异性值相对较小。在Trp125Leu突变体中,这些性质的变化极小。在体内,未检测到任何突变体的电子传递效率降低。得出的结论是:(a)其芳香族残基位点的扰动会影响b6f复合体单体中叶绿素a和一个或两个b血红素的稳定性;(b)IV亚基的苯丙氨酸残基(Phe133/Phe135)对于维持叶绿素a单重激发态的短寿命很重要,从而降低了单线态氧形成的可能性。

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