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血红素结构域在 CO 感应转录激活因子 CooA 中的振动相干光谱。

Vibrational coherence spectroscopy of the heme domain in the CO-sensing transcriptional activator CooA.

机构信息

Department of Physics and Center for Interdisciplinary Research on Complex Systems, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

J Am Chem Soc. 2011 Nov 23;133(46):18816-27. doi: 10.1021/ja206152m. Epub 2011 Oct 28.

Abstract

Femtosecond vibrational coherence spectroscopy was used to investigate the low-frequency vibrational dynamics of the heme in the carbon monoxide oxidation activator protein (CooA) from the thermophilic anaerobic bacterium Carboxydothermus hydrogenoformans (Ch-CooA). Low frequency vibrational modes are important because they are excited by the ambient thermal bath (k(B)T = 200 cm(-1)) and participate in thermally activated barrier crossing events. However, such modes are nearly impossible to detect in the aqueous phase using traditional spectroscopic methods. Here, we present the low frequency coherence spectra of the ferric, ferrous, and CO-bound forms of Ch-CooA in order to compare the protein-induced heme distortions in its active and inactive states. Distortions take place predominantly along the coordinates of low-frequency modes because of their weak force constants, and such distortions are reflected in the intensity of the vibrational coherence signals. A strong mode near 90 cm(-1) in the ferrous form of Ch-CooA is suggested to contain a large component of heme ruffling, consistent with the imidazole-bound ferrous heme crystal structure, which shows a significant protein-induced heme distortion along this coordinate. A mode observed at ~228 cm(-1) in the six-coordinate ferrous state is proposed to be the ν(Fe-His) stretching vibration. The observation of the Fe-His mode indicates that photolysis of the N-terminal α-amino axial ligand takes place. This is followed by a rapid (8.5 ps) transient absorption recovery, analogous to methionine rebinding in photolyzed ferrous cytochrome c. We have also studied CO photolysis in CooA, which revealed very strong photoproduct state coherent oscillations. The observation of heme-CO photoproduct oscillations is unusual because most other heme systems have CO rebinding kinetics that are too slow to make the measurement possible. The low frequency coherence spectrum of the CO-bound form of Ch-CooA shows a strong vibration at ~230 cm(-1) that is broadened and up-shifted compared to the ν(Fe-His) of Rr-CooA (216 cm(-1)). We propose that the stronger Fe-His bond is related to the enhanced thermal stability of Ch-CooA and that there is a smaller (time dependent) tilt of the histidine ring with respect to the heme plane in Ch-CooA. The appearance of strong modes at ~48 cm(-1) in both the ferrous and CO-bound forms of Ch-CooA is consistent with coupling of the heme doming distortion to the photolysis reaction in both samples. Upon CO binding and protein activation, a heme mode near 112 ± 5 cm(-1) disappears, probably indicating a decreased heme saddling distortion. This reflects changes in the heme environment and geometry that must be associated with the conformational transition activating the DNA-binding domain. Protein-specific DNA binding to the CO-bound form of Ch-CooA was also investigated, and although the CO rebinding kinetics are significantly perturbed, there are negligible changes in the low-frequency vibrational spectrum of the heme.

摘要

飞秒振动相干光谱法被用于研究来自嗜热厌氧细菌羧酶氢菌(Carboxydothermus hydrogenoformans,Ch-CooA)的一氧化碳氧化激活蛋白(CooA)中血红素的低频振动动力学。低频振动模式很重要,因为它们是由环境热浴(k(B)T = 200 cm(-1))激发的,并参与热激活势垒穿越事件。然而,在传统的光谱方法中,在水相中几乎不可能检测到这些模式。在这里,我们呈现了 Ch-CooA 的三价、二价和 CO 结合形式的低频相干光谱,以便比较其活性和非活性状态下蛋白质诱导的血红素变形。由于其弱力常数,变形主要发生在低频模式的坐标上,并且这种变形反映在振动相干信号的强度上。Ch-CooA 的二价形式中近90 cm(-1)处的一个强模式被认为包含大量的血红素起皱,与咪唑结合的二价血红素晶体结构一致,该结构显示沿此坐标存在显著的蛋白质诱导血红素变形。在六配位二价态下观察到的228 cm(-1)处的模式被提议为ν(Fe-His)伸缩振动。Fe-His 模式的观察表明,N 端α-氨基轴向配体的光解发生。随后是快速(8.5 ps)瞬态吸收恢复,类似于光解亚铁细胞色素 c 中的甲硫氨酸再结合。我们还研究了 CooA 中的 CO 光解,这揭示了非常强的光产物态相干振荡。血红素-CO 光产物振荡的观察是不寻常的,因为大多数其他血红素系统的 CO 再结合动力学太慢,无法进行测量。Ch-CooA 的 CO 结合形式的低频相干光谱显示出一个在230 cm(-1)处的强振动,与 Rr-CooA(216 cm(-1))相比,该振动变宽且向上移动。我们提出,更强的 Fe-His 键与 Ch-CooA 的增强热稳定性有关,并且在 Ch-CooA 中,组氨酸环相对于血红素平面的(时间相关的)倾斜较小。在 Ch-CooA 的二价和 CO 结合形式中均出现~48 cm(-1)处的强模式,这与两个样品中血红素穹顶变形与光解反应的耦合一致。在 CO 结合和蛋白质激活后,在 112 ± 5 cm(-1)附近的一个血红素模式消失,可能表明血红素鞍状变形减小。这反映了与激活 DNA 结合域的构象转变相关的血红素环境和几何形状的变化。还研究了 Ch-CooA 的 CO 结合形式的蛋白特异性 DNA 结合,尽管 CO 再结合动力学受到显著干扰,但血红素的低频振动光谱几乎没有变化。

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