Sato Kyousuke, Nishina Yasuzou, Shiga Kiyoshi, Tanaka Fumio
Department of Physiology, Kumamoto University Medical School, Honjo, Kumamoto 860-0816, Japan.
J Photochem Photobiol B. 2003 May-Jun;70(2):67-73. doi: 10.1016/s1011-1344(03)00056-3.
The dynamic natures of two hydrogen-bonding model systems, riboflavin tetrabutylate (RFTB)-trichloroacetic acid (TCA) and RFTB-phenol in benzene, and of electron-transferring flavoprotein (ETF) from pig kidney upon excitation of flavins was investigated by means of steady state and time-resolved fluorescence spectroscopy. In both model systems fluorescence intensities of RFTB decreased as TCA or phenol was added. The spectral characteristics of ETF under steady state excitation were quite similar to those of the RFTB-TCA system, but not to those of the RFTB-phenol system. The observed fluorescence decay curves of ETF fit well with the calculated decay curves with two lifetime components, as in the model systems. Averaged lifetime was 0.9 ns. The time-resolved fluorescence spectrum of ETF shifted toward longer wavelength with time after pulsed excitation, which was also observed in the RFTB-TCA system. In the RFTB-phenol system the emission spectrum did not shift at all with time. These results reveal that the dynamic nature of ETF can be ascribed to aliphatic hydrogen-bonding(s) of the isoalloxazine ring with surrounding amino acid(s). From the fluorescence characteristics of ETF in comparison with the model systems, human ETF and other flavoproteins, it was suggested that ETF from pig kidney does not contain Tyr-16 in the beta subunit, unlike human ETF.
通过稳态和时间分辨荧光光谱法研究了两种氢键模型体系(核黄素四丁酯(RFTB)-三氯乙酸(TCA)和RFTB-苯酚在苯中的体系)以及猪肾电子传递黄素蛋白(ETF)在黄素激发后的动态性质。在这两种模型体系中,随着TCA或苯酚的加入,RFTB的荧光强度降低。稳态激发下ETF的光谱特征与RFTB-TCA体系的光谱特征非常相似,但与RFTB-苯酚体系的光谱特征不同。如在模型体系中一样,观察到的ETF荧光衰减曲线与具有两个寿命成分的计算衰减曲线拟合良好。平均寿命为0.9纳秒。脉冲激发后,ETF的时间分辨荧光光谱随时间向更长波长移动,这在RFTB-TCA体系中也有观察到。在RFTB-苯酚体系中发射光谱根本不随时间移动。这些结果表明,ETF的动态性质可归因于异咯嗪环与周围氨基酸的脂肪族氢键。从ETF与模型体系、人ETF和其他黄素蛋白相比的荧光特征来看,提示猪肾ETF与人类ETF不同,其β亚基中不含有Tyr-16。