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Role of a bound ubiquinone on reactions of the Escherichia coli cytochrome bo with ubiquinol and dioxygen

机译:结合的泛醌在大肠杆菌细胞色素bo与泛醇和双氧反应中的作用

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>To probe the functional role of a bound ubiquinone-8 in cytochrome bo-type ubiquinol oxidase from Escherichia coli, we examined reactions with ubiquinol-1 and dioxygen. Stopped-flow studies showed that anaerobic reduction of the wild-type and the bound ubiquinone-free (ΔUbiA) enzymes with ubiquinol-1 immediately takes place with four kinetic phases. Replacement of the bound ubiquinone with 2,6-dibromo-4-cyanophenol (PC32) suppressed the anaerobic reduction of the hemes with ubiquinol-1 by eliminating the fast phase. Flow-flash studies in the reaction of the fully reduced enzyme with dioxygen showed that the heme b-to-heme o electron transfer occurs with a rate constant of ∼1×104 s−1 in all three preparations. These results support our previous proposal that the bound ubiquinone is involved in facile oxidation of substrates in subunit II and subsequent intramolecular electron transfer to low-spin heme b in subunit I.
机译:>为探究结合的泛醌8在大肠杆菌的细胞色素 bo 型泛醇氧化酶中的功能,我们研究了泛醇1与双氧的反应。停止流研究表明,野生型和结合的无泛素酶(ΔUbiA)与泛醇1的厌氧还原反应会立即以四个动力学阶段发生。用2,6-二溴-4-氰基苯酚(PC32)取代结合的泛醌,通过消除快速相,抑制了泛醇-1对血红素的厌氧还原。完全还原的酶与双氧反应的流闪研究表明,血红素 b 到血红素 o 的电子转移发生,速率常数约为1×10在所有三种准备中, 4 s −1 。这些结果支持了我们先前的提议,即结合的泛醌参与亚基II中底物的容易氧化,以及随后的分子内电子转移至亚基I中的低旋血红素 b

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