首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Substitutions at position 146 of cytochrome b affect drastically the properties of heme b_L and the Q_o site of Rhodobacter capsulatus cytochrome bc_1 complex
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Substitutions at position 146 of cytochrome b affect drastically the properties of heme b_L and the Q_o site of Rhodobacter capsulatus cytochrome bc_1 complex

机译:细胞色素b的146位取代极大地影响了血红素b_L的性质和荚膜红细菌细胞色素bc_1复合物的Q_o位点

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摘要

The cytochrome (cyt) b subunit of ubihydroquinone: cytochrome c oxidoreductase (bcx complex) contains four invariant glycine (G) residues proposed to be essential for proper packing of the high and low potential (bH and bh) hemes of the bcl complex. One of these residues, G146 located in the transmembrane helix C of cyt b of Rhodobacter capsulatus, was substituted with A and V using site-directed mutagenesis, and the effects of these substitutions on the properties of the ubiquinone oxidation (Qo) site and heme bL, of the bc1 complex were analyzed. The mutants G146A and V produced properly assembled but catalytically defective bc1 complexes that are unable to support photosynthetic growth. The steady-state ubihydroquinone: cytochrome c reductase activities of the mutant complexes were about one-tenth of that of a parental strain overproducing the wild-type enzyme. Similarly, their light-activated single turnover rates were significantly lower than those of a wild-type complex. The dark potentiometric titrations revealed no significant changes in the redox midpoint potentials (Eml) of the high (bH) and low (bL) potential hemes of cyt b in both G146A and V mutants. However, EPR spectroscopy of the [2Fe-2S] cluster of the bc1 complex indicated that the Qo site of the mutant enzymes were unoccupied. Moreover, the g., signal of heme bL, but not that of heme bH, was modified both in G146A and V, suggesting that the geometry of its ligands has been distorted. These findings indicate that this region of cyt h must be well packed around heme bL, since even a slight increase in the size of the amino acid side chain at position 146 (such as G to A) greatly perturbs the spatial conformation of heme bL, alters substrate accessibility and binding to the Qo site, and renders the bc1 complex inactive.
机译:泛氢醌的细胞色素(cyt)b亚基:细胞色素c氧化还原酶(bcx复合物)包含四个不变的甘氨酸(G)残基,这些残基对于正确包装bcl复合物的高和低电势(bH和bh)血红素必不可少。使用定点诱变,将这些残基之一(位于荚膜红球菌cyt b的跨膜螺旋C中)用A和V取代,这些取代对泛醌氧化(Qo)位点和血红素的性质的影响分析了bc1复合物的bL。突变体G146A和V产生了正确装配的但催化缺陷的bcl复合物,这些复合物无法支持光合生长。突变体复合物的稳态泛氢醌:细胞色素C还原酶活性约为过量生产野生型酶的亲本菌株的十分之一。同样,它们的光活化单周转率明显低于野生型复合物。深色电位滴定法显示,G146A和V突变体中cyt b的高(bH)和低(bL)血红素的氧化还原中点电势(Eml)没有明显变化。但是,对bc1复合物的[2Fe-2S]簇的EPR光谱表明,突变酶的Qo位点未被占用。而且,血红素bL的信号g,而不是血红素bH的信号,在G146A和V中均被修饰,这表明其配体的几何形状已失真。这些发现表明,cyt h的这一区域必须在血红素bL周围充分包装,因为即使位置146处氨基酸侧链的大小略有增加(例如从G到A),也会严重干扰血红素bL的空间构象,改变底物的可及性和与Qo位点的结合,并使bc1复合物失活。

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