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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Ultrafast heme dynamics in ferrous versus ferric cytochrome c studied by time-resolved resonance Raman and transient absorption spectroscopy
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Ultrafast heme dynamics in ferrous versus ferric cytochrome c studied by time-resolved resonance Raman and transient absorption spectroscopy

机译:时间分辨共振拉曼光谱和瞬态吸收光谱法研究亚铁和三价铁细胞色素c中超快的血红素动力学

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摘要

Cytochrome c (Cyt c) is a heme protein involved in electron transfer and also in apoptosis. Its heme iron is bisaxially ligated to histidine and methionine side chains and both ferric and ferrous redox states are physiologically relevant, as well as a ligand exchange between internal residue and external diatomic molecule. The photodissociation of internal axial ligand was observed for several ferrous heme proteins including Cyt c, but no time-resolved studies have been reported on ferric Cyt c. To investigate how the oxidation state of the heme influences the primary photoprocesses, we performed a comprehensive comparative study on horse heart Cyt c by subpicosecond time-resolved resonance Raman and femtosecond transient absorption spectroscopy. We found that in ferric Cyt c, in contrast to ferrous Cyt c, the photodissociation of an internal ligand does not take place, and relaxation dynamics is dominated by vibrational cooling in the ground electronic state of the heme. The intermolecular vibrational energy transfer was found to proceed in a single phase with a temperature decay of similar to 7 ps in both ferric and ferrous Cyt c. For ferrous Cyt c, the instantaneous photodissociation of the methionine side chain from the heme iron is the dominant event, and its rebinding proceeds in two phases, with time constants of similar to 5 and similar to 16 ps. A mechanism of this process is discussed, and the difference in photoinduced coordination behavior between ferric and ferrous Cyt c is explained by an involvement of the excited electronic state coupled with conformational relaxation of the heme.
机译:细胞色素c(Cyt c)是一种参与电子转移和凋亡的血红素蛋白。它的血红素铁双轴连接到组氨酸和蛋氨酸的侧链上,铁和亚铁的氧化还原状态在生理上是相关的,以及内部残基和外部双原子分子之间的配体交换。在包括Cyt c在内的几种亚铁血红素蛋白上观察到内部轴向配体的光解离,但尚未报道有关Cyt c的时间分辨研究。为了研究血红素的氧化态如何影响初级光过程,我们通过亚皮秒时间分辨共振拉曼光谱和飞秒瞬态吸收光谱对马心Cyt c进行了全面的比较研究。我们发现,与亚铁Cyt c相比,铁Cyt c不会发生内部配体的光解离,驰豫动力学主要由血红素的基态电子振动冷却引起。发现分子间的振动能量转移是在单相中进行的,在铁和亚铁Cyt c中,温度衰减约为7 ps。对于亚铁Cyt c,蛋氨酸侧链与血红素铁的瞬时光解离是主要事件,它的重新结合分两个阶段进行,时间常数分别约为5和16 ps。讨论了此过程的机制,并通过激发电子态的参与以及血红素的构象松弛来解释铁和亚铁Cyt c在光诱导配位行为上的差异。

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