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Spectroscopic evidence for the participation of compound A (Fea32+-O2) in the reaction of mixed-valence cytochrome c oxidase with oxygen at room temperature

机译:室温下化合物A(Fea32 + -O2)参与混合价细胞色素c氧化酶与氧气反应的光谱证据

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p1. The reaction of the partially reduced mixed-valence state of cytochrome c oxidase (a3+CuA2+a3(2+)COCuB+) with O2 was studied by the rapid-reaction technique of flow-flash spectrophotometry at room temperature. Biphasic absorption records are observed in the time range up to 2 ms in both the Soret and visible spectral regions. The fast-phase rate is O2-concentration-dependent and reaches a pseudo-first-order value of 4.5 X 10(4)s-1 at 680 microM-O2 at 20 degrees C. Under the same conditions the second-phase rate is limited at 6.0 X 10(3)s-1. Kinetic difference spectra of the two species in the Soret region are not markedly different in form, whereas in the visible region two spectroscopically different species are clearly distinguished. 4. The first intermediate has a peak at 595 nm and a trough at 605 nm. The form of this spectrum resembles that seen in low-temperature studies and assigned to an O2-bound form of ferrocytochrome a3. This evidence supports a structure for oxycytochrome c oxidase with O2 bound only to cytochrome a3 and not bridged between cytochrome a3 and CuB. The second intermediate has a difference spectrum with a trough at 592 nm and a peak at 610 nm. Again, the form of this spectrum is similar to that observed during the O2 reaction at low temperature and is though to be a result of electron transfer from the oxidase to bound O2. 5. The oxygen profile of the fast phase suggests that a spectroscopically silent species may precede the formation of compound A. These data represent the first spectroscopic distinction, in the physiological temperature range, between O2 binding and electron transfer during the O2 reaction of mammalian cytochrome c oxidase. 6. A mechanism is presented for the O2 reaction of the mixed-valence state of cytochrome c oxidase involving four intermediate species. Electron transfer during this reaction is slow, relative to that seen with the fully reduced enzyme, and probably accounts for the detectability of the oxyferro species under these conditions./p
机译:> 1。采用流动-快速分光光度法,在室温下研究了细胞色素C氧化酶(a3 + CuA2 + a3(2+)COCuB +)部分还原价态与O2的反应。在Soret和可见光谱区域中,在长达2 ms的时间范围内均观察到双相吸收记录。快速相速率取决于O2浓度,在20摄氏度下于680 microM-O2时达到4.5 X 10(4)s-1的拟一阶值。在相同条件下,第二相速率为限制为6.0 X 10(3)s-1。 Soret区中两种物质的动力学差异光谱形式上无明显不同,而在可见光区中,两种光谱学上不同的物质则可以清楚地区分。 4.第一中间体在595nm具有峰,在605nm具有谷。该光谱的形式类似于在低温研究中观察到的光谱,并分配给铁细胞色素a3的O2结合形式。该证据支持了一种氧细胞色素c氧化酶的结构,其中O2仅与细胞色素a3结合,而没有在细胞色素a3和CuB之间桥接。第二中间体具有差光谱,该差光谱在592nm处具有波谷并且在610nm处具有峰。再次,该光谱的形式类似于在低温下O 2反应期间观察到的形式,并且尽管是电子从氧化酶转移至结合的O 2的结果。 5.快相的氧分布表明,在化合物A形成之前,光谱上的沉默物种可能先于光谱。这些数据代表了在生理温度范围内,在哺乳动物细胞色素的O2反应过程中,O2结合与电子转移之间的第一个光谱区别。 c氧化酶。 6.提出了一种涉及两种中间物种的细胞色素C氧化酶混合价态O2反应的机理。相对于完全还原的酶而言,该反应过程中的电子转移很慢,这可能解释了在这些条件下氧铁物种的可检测性。

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