首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >New transients in the electron-transfer dynamics of photolyzed mixed-valence CO-cytochrome c oxidase.
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New transients in the electron-transfer dynamics of photolyzed mixed-valence CO-cytochrome c oxidase.

机译:光解混合价CO-细胞色素c氧化酶的电子转移动力学中的新瞬态。

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摘要

Electron transfer following photolysis of CO from mixed-valence (cytochrome a3+ Cu2+A cytochrome a2+3-CO Cu+B) cytochrome oxidase (ferrocytochrome-c; oxygen oxidoreductase, EC 1.9.3.1) was studied on time scales of nanoseconds to milliseconds by multichannel time-resolved optical absorption spectroscopy. In this method, the optical absorption was measured at many wavelengths simultaneously by using an optical spectrometric multichannel analyzer system. The high-quality time-resolved difference spectra showed a large increase on a microsecond time scale in the visible region centered at approximately 520 nm and in the UV region centered at approximately 390 nm. These absorbance changes were not observed after photodissociation of CO from the fully reduced enzyme and therefore are attributed to intramolecular electron transfer. Simultaneously, there was a blue shift and a small increase in the alpha band, which is attributed to the reduction of cytochrome alpha. Approximately one-third of the absorbance change at 520 nm can be attributed to reduction of cytochrome a. The absorbance changes associated with the 520- and the 390-nm bands are on the same time scale (t1/2 approximately 2 microseconds) as the dissociation of CO from Cu+B reported previously by time-resolved infrared spectroscopy. The position and shape of these bands are reasonable for charge-transfer transitions involving copper(II). We suggest that the absorbance increase at 520 nm, which cannot be attributed to a reduction of cytochrome a, may represent a charge transfer involving Cu2+B accompanying the oxidation of Cu+B to Cu2+B. The absorbance increase at 390 nm is also partially attributed to this transition. These results suggest that Cu2+B may be observed spectrophotometrically in the electron-transfer dynamics of cytochrome oxidase.
机译:研究了从光合价(细胞色素a3 + Cu2 + A细胞色素a2 + 3-CO Cu + B)细胞色素氧化酶(ferrocytochrome-c;氧氧化还原酶,EC 1.9.3.1)的CO光解后的电子转移。通过多通道时间分辨光吸收光谱法。在该方法中,通过使用光谱多通道分析仪系统同时在许多波长下测量光吸收。高质量的时间分辨差异光谱显示,在大约520 nm的可见光区域和在大约390 nm的紫外光区域,微秒级刻度都有很大的增加。从完全还原的酶光解离CO后未观察到这些吸光度变化,因此归因于分子内电子转移。同时,由于细胞色素α的减少,α谱带出现了蓝移,并有少量增加。 520 nm处吸光度变化的大约三分之一可以归因于细胞色素a的减少。与520和390 nm波段相关的吸光度变化与时间分辨红外光谱法先前报道的CO从Cu + B上解离的时间范围相同(t1 / 2约为2微秒)。这些带的位置和形状对于涉及铜(II)的电荷转移跃迁是合理的。我们建议,不能归因于细胞色素a减少的520 nm处的吸光度增加,可能代表涉及Cu2 + B伴随着Cu + B氧化为Cu2 + B的电荷转移。 390 nm处的吸光度增加也部分归因于这种转变。这些结果表明,在细胞色素氧化酶的电子转移动力学中,可以分光光度法观察到Cu2 + B。

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