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首页> 外文期刊>European Biophysics Journal >Investigation of ubiquinol formation in isolated photosynthetic reaction centers by rapid-scan Fourier transform IR spectroscopy
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Investigation of ubiquinol formation in isolated photosynthetic reaction centers by rapid-scan Fourier transform IR spectroscopy

机译:快速扫描傅里叶变换红外光谱研究孤立的光合作用反应中心中泛醇的形成

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Light-induced formation of ubiquinol-10 in Rhodobacter sphaeroides reaction centers was followed by rapid-scan Fourier transform IR difference spectroscopy, a technique that allows the course of the reaction to be monitored, providing simultaneously information on the redox states of cofactors and on protein response. The spectrum recorded between 4 and 29 ms after the second. ash showed bands at 1,470 and 1,707 cm(-1), possibly due to a QH(-) intermediate state. Spectra recorded at longer delay times showed a different shape, with bands at 1,388 (+) and 1,433 (+) cm(-1) characteristic of ubiquinol [Mezzetti et al. FEBS Lett. 537: 161-165 (2003)]. These spectra re. ect the location of the ubiquinol molecule outside the Q(B) binding site. This was confirmed by Fourier transform IR difference spectra recorded during and after continuous illumination in the presence of an excess of exogenous ubiquinone molecules, which revealed the process of ubiquinol formation, of ubiquinone/ubiquinol exchange at the Q(B) site and between detergent micelles, and of Q(B)- and QH(2) reoxidation by external redox mediators. Kinetics analysis of the IR bands allowed us to estimate the ubiquinone/ubiquinol exchange rate between detergent micelles to approximately 1 s. The reoxidation rate of Q(B)- by external donors was found to be much lower than that of QH(2), most probably reflecting a stabilizing/protecting effect of the protein for the semiquinone form. A transient band at 1,707 cm(-1) observed in the first scan (4-29 ms) after both the first and the second flash possibly reflects transient protonation of the side chain of a carboxylic amino acid involved in proton transfer from the cytoplasm towards the Q(B) site.
机译:通过光诱导球形红球菌反应中心中泛醇10的形成,然后进行快速扫描傅立叶变换红外差光谱法,该技术可以监测反应过程,同时提供有关辅因子和蛋白质的氧化还原状态的信息响应。在第二秒之后的4到29毫秒之间记录频谱。灰显示在1,470和1,707 cm(-1)处的谱带,可能是由于QH(-)中间态所致。在较长的延迟时间记录的光谱显示出不同的形状,具有泛醇特征的1,388(+)和1,433(+)cm(-1)的谱带[Mezzetti等。 FEBS Lett。 537:161-165(2003)]。这些光谱重新。泛素分子在Q(B)结合位点之外的位置。在存在过量外源泛醌分子的情况下连续照明期间和之后记录的傅里叶变换红外差光谱已证实了这一点,该光谱揭示了泛醌形成过程,Q(B)部位和去污剂胶束之间的泛醌/泛醌交换过程。 ,以及外部氧化还原介体对Q(B)-和QH(2)的再氧化作用。红外带的动力学分析使我们能够估计洗涤剂胶束之间的泛醌/泛醇交换速率约为1 s。发现外部供体对Q(B)-的重氧化速率远低于QH(2),最可能反映了该蛋白对半醌形式的稳定/保护作用。在第一次和第二次闪烁后的第一次扫描(4-29毫秒)中观察到的1,707 cm(-1)的瞬态带可能反映了参与质子从细胞质向细胞质子转移的羧酸氨基酸侧链的瞬态质子化Q(B)网站。

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