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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Absorption and emission spectroscopic characterization of photo-dynamics of photoactivated adenylyl cyclase mutant bPAC-Y7F of Beggiatoa sp.
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Absorption and emission spectroscopic characterization of photo-dynamics of photoactivated adenylyl cyclase mutant bPAC-Y7F of Beggiatoa sp.

机译:Beggiatoa sp。的光活化腺苷酸环化酶突变体bPAC-Y7F的光动力学的吸收和发射光谱表征。

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摘要

The photoactivated cyclase bPAC of the microbial mats bacterium Beggiatoa sp. consists of a BLUF domain and an adenylyl cyclase domain. It has strong activity of photo-induced cyclic adenylyl monophosphate (cAMP) formation and is therefore an important optogenetic tool in neuroscience applications. The SUMO-bPAC-Y7F mutant where Tyr-7 is replaced by Phe-7 in the BLUF domain has lost the typical BLUF domain photo-cycle dynamics. Instead, the investigated SUMO-bPAC-Y7F mutant consisted of three protein conformations with different triplet based photo-dynamics: (i) reversible flavin quinone (Fl) cofactor reduction to flavin semiquinone (FlH), (ii) reversible violetear ultraviolet absorbing flavin photoproduct (FlA) formation, and (iii) irreversible red absorbing flavin photoproduct (FlC) formation. Absorption and emission spectroscopic measurements on SUMO-bPAC-Y7F were carried out before, during and after light exposure. Flavin photo-dynamics schemes are developed for the SUMO-bPAC-Y7F fractions performing photo-induced FlH., FIA, and FlC formation. Quantitative parameters of the flavin cofactor excitation, relaxation and recovery dynamics in SUMO-bPAC-Y7F are determined. (C) 2014 Elsevier B.V. All rights reserved.
机译:微生物席菌Beggiatoa sp。的光活化环化酶bPAC。由BLUF结构域和腺苷酸环化酶结构域组成。它具有很强的光诱导性环状单磷酸腺苷酯(cAMP)形成的活性,因此是神经科学应用中的重要光遗传学工具。 SUMO-bPAC-Y7F突变体(其中Tyr-7被BLUF结构域中的Phe-7取代)失去了典型的BLUF结构域光循环动力学。相反,研究的SUMO-bPAC-Y7F突变体由三种具有不同三重态光动力学的蛋白质构象组成:(i)可逆黄素醌(Fl)辅因子还原为黄素半醌(FlH),(ii)可逆紫/近紫外吸收黄素光产物(FlA)的形成,和(iii)不可逆的红色吸收黄素光产物(FlC)的形成。在曝光前,曝光中和曝光后对SUMO-bPAC-Y7F进行吸收和发射光谱测量。针对执行光诱导的FlH。,FIA和FlC形成的SUMO-bPAC-Y7F馏分开发了黄素光动力学方案。确定了SUMO-bPAC-Y7F中黄素辅因子激发,弛豫和恢复动力学的定量参数。 (C)2014 Elsevier B.V.保留所有权利。

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