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首页> 外文期刊>Spectroscopy >Time-resolved step scan FTIR spectroscopy and DFT investigation on triplet formation in peridinin-chlorophyll-a-protein from Amphidinium carterae at low temperature
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Time-resolved step scan FTIR spectroscopy and DFT investigation on triplet formation in peridinin-chlorophyll-a-protein from Amphidinium carterae at low temperature

机译:时间分辨步进扫描FTIR光谱法和DFT研究低温下碳弧菌中苦豆素-叶绿素a蛋白的三重态形成

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We have used time-resolved step-scan FTIR spectroscopy to investigate the process of triplet formation in the peridinin-chlorophyll-a-protein (PCP) at 100 K. Results have led to the identification of possible marker bands for peridinin (Per) and (3)Per. Band assignment has been carried out performing a DFT investigation on Per, (3)Per and on model molecules. The main spectral feature is a couple of bands at 1746 (negative) and 1719 (positive) cm(-1). The assignment of these two bands to the lactonic C=O of Per in (respectively) its fundamental S-0 and triplet T-1 state is based on: (1) comparison with FTIR spectra of isolated Per in literature; (2) good agreement with DFT calculations for Per and (3)Per; (3) the downshift of the band upon triplet formation as predicted by DFT calculations in Per and similar lactonic systems; (4) the kinetic of band disappearance, in agreement with literature data. Another possible band for Per in its fundamental state has been identified at 1523 cm(-1). The results are in overall agreement with a recent step-scan FTIR study on PCP at 298 K (Alexandre et al., Biophys. J. 93 (2007), 2118-2128) even though some small discrepancies emerge, probably related to the different temperature at which experiments were carried out. Further DFT calculations have been performed to rationalise these spectral discrepancies. From a methodological point of view, the work demonstrates the potential of a combined step-scan FTIR/DFT approach in the study of photophysical processes in proteins. Furthermore, it has been shown that, when small differential IR signals are concerned, nagging photothermal effects can interfere and can possibly lead to misleading interpretations.
机译:我们已经使用时间分辨的步进扫描FTIR光谱研究了在100 K下peridinin-叶绿素-a蛋白(PCP)中三重态形成的过程。结果导致了peridinin(Per)和(3)每已经对Per,(3)Per和模型分子进行了DFT研究,进行了谱带分配。主要频谱特征是在1746(负)和1719(正)cm(-1)处的几个波段。这两个谱带分别对应于其基本的S-0和三重态T-1状态的Per的内酯C = O,是基于:(1)与文献中分离的Per的FTIR光谱比较; (2)与Per和(3)Per的DFT计算具有良好的一致性; (3)在Per和类似的内酯体系中通过DFT计算所预测的三重峰形成时的谱带下降; (4)带消失的动力学,与文献数据一致。 Per在其基本状态下的另一个可能谱带已确定为1523 cm(-1)。该结果与最近关于298 K的PCP的步进扫描FTIR研究(Alexandre等人,Biophys。J. 93(2007),2118-2128)总体上是一致的,尽管出现了一些小的差异,可能与不同的差异有关。实验进行时的温度。已经进行了进一步的DFT计算以合理化这些光谱差异。从方法学的角度来看,这项工作证明了结合步进扫描FTIR / DFT方法在研究蛋白质光物理过程中的潜力。此外,已经表明,当关注小的差分IR信号时,na的光热效应会干扰并可能导致误导性的解释。

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