首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Structural and functional analysis of deficient mutants in subunit I of cytochrome c oxidase from Saccharomyces cerevisiae
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Structural and functional analysis of deficient mutants in subunit I of cytochrome c oxidase from Saccharomyces cerevisiae

机译:酿酒酵母细胞色素C氧化酶I亚基缺失突变体的结构和功能分析

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Four point mutations in subunit I of cytochrome c oxidase from Saccharomyces cerevisiae that had been selected for respiratory incompetence but still contained spectrally detectable haem aa3 were analysed. The isolated mutant enzymes exhibited minor band shifts in their optical spectra and contained all eleven subunits. However, steady state activities were only a few percent compared to wild type enzyme. Using a comprehensive experimental approach, we first checked the integrity of the enzyme preparations and then identified the specific functional defect. The results are discussed using information from the recently solved structures of cytochrome c oxidase at 2.8 ?. Mutation I67N is positioned between haem a and a conserved glutamate residue (E243). It caused a distortion of the EPR signal of haem a and shifted its midpoint potential by 54 mV to the negative. The high-resolution structure suggests that the primary reason for the low activity of the mutant enzyme could be that asparagine in position 67 might form a stable hydrogen bond to E243, which is part of a proposed proton channel. Cytochrome c oxidase isolated from mutant T316K did not meet our criteria for homogeneity and was therefore omitted from further analysis. Mutants G352V and V380M exhibited an impairment of electron transfer from haem a to a3 and ligand binding to the binuclear centre was affected. In mutant V380M also the midpoint potential of CuB was shifted by 65 mV to the positive. The results indicated for these two mutants changes primarily associated with the binuclear centre, possibly associated with an interference in the routes and/or sites of protonation which are required for stable formation of the catalytic intermediates. This interpretation is discussed in the light of the high resolution structure.
机译:分析了来自酿酒酵母的细胞色素C氧化酶的亚基I的四个点突变,这些突变已被选为呼吸功能不全,但仍含有可光谱检测的血红素aa3。分离的突变酶在其光谱中表现出较小的谱带移动,并包含所有十一个亚基。但是,与野生型酶相比,稳态活动仅占百分之几。使用全面的实验方法,我们首先检查了酶制剂的完整性,然后确定了特定的功能缺陷。使用来自最近解析的2.8?的细胞色素C氧化酶结构的信息讨论了结果。突变I67N位于血红素α和保守的谷氨酸残基之间(E243)。它导致血红素a的EPR信号失真,并将其中点电位偏移了54 mV至负值。高分辨率结构表明突变酶活性低的主要原因可能是第67位的天冬酰胺可能与E243形成稳定的氢键,这是拟议的质子通道的一部分。从突变体T316K分离的细胞色素c氧化酶不符合我们的均一性标准,因此在进一步分析中被省略。突变体G352V和V380M表现出从血红素a到a3的电子转移受到损害,并且配体与双核中心的结合受到影响。在突变型V380M中,CuB的中点电势也被移动了65 mV至正值。对于这两个突变体而言,表明的结果主要与双核中心有关,可能与对稳定形成催化中间体所需的质子化途径和/或位点的干扰有关。根据高分辨率结构讨论了这种解释。

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