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Photoactivation of the flavin cofactor in Xenopus laevis (6–4) photolyase: Observation of a transient tyrosyl radical by time-resolved electron paramagnetic resonance

机译:非洲爪蟾(6–4)光裂解酶中黄素辅因子的光活化:通过时间分辨电子顺磁共振观察瞬时酪氨酸自由基

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摘要

The light-induced electron transfer reaction of flavin cofactor photoactivation in Xenopus laevis (6–4) photolyase has been studied by continuous-wave and time-resolved electron paramagnetic resonance spectroscopy. When the photoactivation is initiated from the fully oxidized form of the flavin, a neutral flavin radical is observed as a long-lived paramagnetic intermediate of two consecutive single-electron reductions under participation of redox-active amino acid residues. By time-resolved electron paramagnetic resonance, a spin-polarized transient radical-pair signal was detected that shows remarkable differences to the signals observed in the related cyclobutane pyrimidine dimer photolyase enzyme. In (6–4) photolyase, a neutral tyrosine radical has been identified as the final electron donor, on the basis of the characteristic line width, hyperfine splitting pattern, and resonance magnetic field position of the tyrosine resonances of the transient radical pair.
机译:通过连续波和时间分辨电子顺磁共振波谱研究了非洲爪蟾(6–4)光裂解酶中黄素辅因子光活化的光诱导电子转移反应。当从黄素的完全氧化形式开始光活化时,观察到中性黄素自由基是氧化还原活性氨基酸残基参与下两次连续单电子还原的长寿命顺磁性中间体。通过时间分辨电子顺磁共振,检测到自旋极化的瞬态自由基对信号,该信号与相关的环丁烷嘧啶二聚体光解酶中观察到的信号显示出显着差异。在(6–4)光解酶中,根据瞬态自由基对的特征线宽,超精细分裂模式和酪氨酸共振的共振磁场位置,已将中性酪氨酸自由基确定为最终的电子供体。

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