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bc复合物的超快光化学

Ultrafast photochemistry of the bc complex.

作者信息

Vos Marten H, Reeder Brandon J, Daldal Fevzi, Liebl Ursula

机构信息

LOB, Ecole Polytechnique, CNRS, INSERM, 91128 Palaiseau Cedex, France.

School of Biological Sciences, University of Essex, UK.

出版信息

Phys Chem Chem Phys. 2017 Mar 1;19(9):6807-6813. doi: 10.1039/c7cp00193b.

DOI:10.1039/c7cp00193b
PMID:28218331
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5408354/
Abstract

We present a full investigation of ultrafast light-induced events in the membraneous cytochrome bc complex by transient absorption spectroscopy. This energy-transducing complex harbors four redox-active components per monomer: heme c, two 6-coordinate b-hemes and a [2Fe-2S] cluster. Using excitation of these components in different ratios under various excitation conditions, probing in the full visible range and under three well-defined redox conditions, we demonstrate that for all ferrous hemes of the complex photodissociation of axial ligands takes place and that they rebind in 5-7 ps, as in other 6-coordinate heme proteins, including cytoglobin, which is included as a reference in this study. By contrast, the signals are not consistent with photooxidation of the b hemes. This conclusion contrasts with a recent assessment based on a more limited data set. The binding kinetics of internal and external ligands are indicative of a rigid heme environment, consistent with the electron transfer function. We also report, for the first time, photoactivity of the very weakly absorbing iron-sulfur center. This yields the unexpected perspective of studying photochemistry, initiated by excitation of iron-sulfur clusters, in a range of protein complexes.

摘要

我们通过瞬态吸收光谱法对膜细胞色素bc复合物中超快光诱导事件进行了全面研究。这种能量转换复合物每个单体含有四个氧化还原活性成分:血红素c、两个六配位b-血红素和一个[2Fe-2S]簇。在各种激发条件下以不同比例激发这些成分,在整个可见光范围内并在三种明确的氧化还原条件下进行探测,我们证明,对于该复合物的所有亚铁血红素,轴向配体发生光解离,并在5-7皮秒内重新结合,这与其他六配位血红素蛋白(包括细胞珠蛋白,本研究将其作为参考纳入)的情况相同。相比之下,信号与b-血红素的光氧化不一致。这一结论与基于更有限数据集的最近评估结果相反。内部和外部配体的结合动力学表明血红素环境刚性,这与电子传递功能一致。我们还首次报道了吸收非常弱的铁硫中心的光活性。这为研究一系列蛋白质复合物中铁硫簇激发引发的光化学提供了意想不到的视角。

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本文引用的文献

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