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低温下结合光吸收和电子圆二色性光谱揭示的细胞色素 c 铁的构象亚稳态。

Conformational substates of ferricytochrome c revealed by combined optical absorption and electronic circular dichroism spectroscopy at cryogenic temperature.

机构信息

Department of Physical and Astronomical Sciences, University of Palermo, Via Archirafi 36, I-90123 Palermo, Italy.

出版信息

Biophys Chem. 2010 Mar;147(1-2):8-12. doi: 10.1016/j.bpc.2009.12.001. Epub 2009 Dec 6.

Abstract

We have investigated the heterogeneity of the Fe(III)-Met80 linkage of horse heart ferricytochrome c by probing the 695nm charge transfer band with absorption and electronic circular dichroism (ECD) spectroscopy. In order to verify the connection between conformational substates of the Fe(III)-Met80 linkage and the 695nm band spectral heterogeneity, we have performed experiments as a function of pH (neutral and acidic) and temperature (room and 20K). At room temperature, the ECD spectrum is blue shifted with respect to the absorption one; the shift is more pronounced at acidic pH and is compatible with the presence of sub-bands. ECD measurements at 20K highlighted the heterogeneous nature of the 695nm band and provided direct experimental evidence for the presence of sub-bands. Indeed, while the absorption spectra remained deceivingly unstructured, the ECD spectra showed well resolved peaks and shoulders. A consistent fit of the 20K absorption and ECD spectra showed that five Gaussians (each centered at the same frequency in the absorption and ECD spectrum) are able to reproduce the observed lineshapes. A careful analysis of frequency shifts and intensity ratios of these sub-bands enabled us to identify at least three distinct sub-bands arising from taxonomic conformational substates of the Fe(III)-Met80 linkage. In view of the major influence of the Fe(III)-Met80 linkage on the redox potential of ferricytochrome c, we speculate that these spectrally distinguishable substates may have different functional roles.

摘要

我们通过吸收和电子圆二色性(ECD)光谱研究了马心细胞色素 c 中 Fe(III)-Met80 键的异质性。为了验证 Fe(III)-Met80 键构象亚基与 695nm 带光谱异质性之间的联系,我们进行了 pH 值(中性和酸性)和温度(室温和 20K)的实验。在室温下,ECD 光谱相对于吸收光谱发生蓝移;在酸性 pH 值下,这种位移更为明显,与亚带的存在一致。20K 的 ECD 测量突出了 695nm 带的异质性,并提供了亚带存在的直接实验证据。实际上,尽管吸收光谱仍然没有结构,但 ECD 光谱显示出了很好分辨的峰和肩。20K 吸收和 ECD 光谱的一致拟合表明,五个高斯函数(每个都在吸收和 ECD 光谱中的相同频率处)能够重现观察到的线形状。对这些亚带的频率位移和强度比的仔细分析使我们能够识别出至少三个源自 Fe(III)-Met80 键构象亚基的不同亚带。鉴于 Fe(III)-Met80 键对细胞色素 c 氧化还原电位的重大影响,我们推测这些在光谱上可区分的亚基可能具有不同的功能作用。

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