首页> 美国卫生研究院文献>Biophysical Journal >Transient binding of CO to Cu(B) in cytochrome c oxidase is dynamically linked to structural changes around a carboxyl group: a time-resolved step-scan Fourier transform infrared investigation.
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Transient binding of CO to Cu(B) in cytochrome c oxidase is dynamically linked to structural changes around a carboxyl group: a time-resolved step-scan Fourier transform infrared investigation.

机译:CO与细胞色素C氧化酶中Cu(B)的瞬时结合与羧基周围的结构变化动态关联:时间分辨的步进扫描傅立叶变换红外研究。

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摘要

The redox-driven proton pump cytochrome c oxidase is that enzymatic machinery of the respiratory chain that transfers electrons from cytochrome c to molecular oxygen and thereby splits molecular oxygen to form water. To investigate the reaction mechanism of cytochrome c oxidase on the single vibrational level, we used time-resolved step-scan Fourier transform infrared spectroscopy and studied the dynamics of the reduced enzyme after photodissociation of bound carbon monoxide across the mid-infrared range (2300-950 cm(-1)). Difference spectra of the bovine complex were obtained at -20 degrees C with 5 micros time resolution. The data demonstrate a dynamic link between the transient binding of CO to Cu(B) and changes in hydrogen bonding at the functionally important residue E(I-286). Variation of the pH revealed that the pK(a) of E(I-286) is >9.3 in the fully reduced CO-bound oxidase. Difference spectra of cytochrome c oxidase from beef heart are compared with those of the oxidase isolated from Rhodobacter sphaeroides. The bacterial enzyme does not show the environmental change in the vicinity of E(I-286) upon CO dissociation. The characteristic band shape appears, however, in redox-induced difference spectra of the bacterial enzyme but is absent in redox-induced difference spectra of mammalian enzyme. In conclusion, it is demonstrated that the dynamics of a large protein complex such as cytochrome c oxidase can be resolved on the single vibrational level with microsecond Fourier transform infrared spectroscopy. The applied methodology provides the basis for future investigations of the physiological reaction steps of this important enzyme.
机译:氧化还原驱动的质子泵细胞色素c氧化酶是呼吸链的酶促机制,它将电子从细胞色素c转移到分子氧,从而分裂分子氧形成水。为了研究细胞色素c氧化酶在单个振动水平上的反应机理,我们使用了时间分辨的阶跃傅里叶变换红外光谱,研究了结合的一氧化碳在中红外范围内光解离后还原酶的动力学(2300- 950厘米(-1))。牛复合物的差异光谱是在-20摄氏度下以5微米的时间分辨率获得的。数据表明,CO与Cu(B)的瞬时结合与功能重要的残基E(I-286)上的氢键变化之间存在动态联系。 pH值的变化表明,在完全还原的CO结合氧化酶中,E(I-286)的pK(a)> 9.3。比较了来自牛肉心的细胞色素c氧化酶的差异光谱与从球形红球菌分离的氧化酶的差异光谱。 CO解离后,细菌酶在E(I-286)附近未显示环境变化。然而,特征带形出现在细菌酶的氧化还原诱导的差异谱中,而在哺乳动物酶的氧化还原诱导的差异谱中不存在。总之,证明了可以通过微秒傅里叶变换红外光谱在单个振动水平上解析大蛋白复合物(如细胞色素C氧化酶)的动力学。应用的方法学为该重要酶的生理反应步骤的未来研究提供了基础。

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