首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Isomers in the excited state of electron-transferring flavoprotein from Megasphaera elsdenii: Spectral resolution from the time-resolved fluorescence spectra
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Isomers in the excited state of electron-transferring flavoprotein from Megasphaera elsdenii: Spectral resolution from the time-resolved fluorescence spectra

机译:埃尔斯麦格氏球菌电子转移黄素蛋白激发态的异构体:时间分辨荧光光谱的光谱分辨率

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Electron-transferring flavoprotein (Holo-ETF) from Megasphaera elsdenii contains two FAD's, one of which easily dissociates to form Iso-ETF (contains one FAD). Time-resolved fluorescence of FAD in Iso-ETF, and Holo-ETF were measured at 5 degrees C and 25 degrees C. Wavelength-dependent fluorescence decays of the both ETF at 5 degrees C and 25 degrees C were analyzed to resolve them into two independent spectra. It was found that Iso-ETF displayed two spectra with lifetime of 0.605 ns (emission peak, 508 nm) and with lifetime of 1.70 ns (emission peak, 540 nm) at 5 degrees C, and with lifetime of 0.693 ns (emission peak, 508 mn) and with lifetime of 2.75 ns (emission peak, 540 nm) at 25 degrees C. Holo-ETF displayed two spectra with lifetime of 0.739 ns (emission peak, 508 nm) and with lifetime of 2.06 ns (emission peak, 545 nm) at 5 degrees C, and with lifetime of 0.711 ns (emission peak, 527 nm) and with lifetime of 3.08 ns (emission peak, 540 nm) at 25 degrees C. Thus fluorescence lifetimes of every spectrum increased upon elevating temperature. Emission peaks Iso-ETF did not change much upon elevating temperature. Activation enthalpy changes, activation entropy changes and activation Gibbs energy changes of quenching rates all displayed negative. Two emission species in the both ETF may be hydrogen-bonding isomers, because isoalloxazine ring of FAD contains four hydrogen acceptors and one donor. (c) 2007 Elsevier B.V. All rights reserved.
机译:埃尔氏大球藻的电子转移黄素蛋白(Holo-ETF)包含两个FAD,其中一个很容易解离形成Iso-ETF(包含一个FAD)。在5摄氏度和25摄氏度下测量了Iso-ETF和Holo-ETF中FAD的时间分辨荧光。分析了两种ETF在5摄氏度和25摄氏度下随波长变化的荧光衰减,将其分解为两个独立光谱。发现Iso-ETF在5摄氏度下显示两个光谱,其寿命分别为0.605 ns(发射峰,508 nm)和1.70 ns(发射峰,540 nm),寿命为0.693 ns(发射峰,发射峰,540 nm)。 508 mn)且在25摄氏度下的寿命为2.75 ns(发射峰,540 nm)。Holo-ETF显示了两个光谱,寿命为0.739 ns(发射峰,508 nm)和寿命为2.06 ns(发射峰,545)在5摄氏度时,其寿命为0.711 ns(发射峰,527 nm),在25摄氏度时,其寿命为3.08 ns(发射峰,540 nm)。因此,每个光谱的荧光寿命随着温度的升高而增加。升高温度,Iso-ETF的发射峰变化不大。淬火速率的活化焓变化,活化熵变化和活化吉布斯能量变化均显示为负。由于FAD的异恶嗪环包含四个氢受体和一个供体,两个ETF中的两个发射物种可能是氢键异构体。 (c)2007 Elsevier B.V.保留所有权利。

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