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Time-resolved visible and infrared absorption spectroscopy data obtained using photosystem I particles with non-native quinones incorporated into the A1 binding site

机译:使用光系统I粒子并将非天然醌掺入A1结合位点获得的时间分辨可见光和红外吸收光谱数据

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摘要

Time-resolved visible and infrared absorption difference spectroscopy data at both 298 and 77 K were obtained using cyanobacterial menB mutant photosystem I particles with several non-native quinones incorporated into the A1 binding site. Data was obtained for photosystem I particles with phylloquinone (2-methyl-3-phytyl-1,4-naphthoquinone), 2-bromo-1,4-naphthoquinone, 2-chloro-1,4-naphthoquinone, 2-methyl-1,4-naphthoquinone, 2,3-dibromo-1,4-naphthoquinone, 2,3-dichloro-1,4-naphthoquinone, and 9,10-anthraquinone incorporated. Transient absorption data were obtained at 487 and 703 nm in the visible spectral range, and 1950–1100 cm−1 in the infrared region. Time constants obtained from fitting the time-resolved infrared and visible data are in good agreement. The measured time constants are crucial for the development of appropriate kinetic models that can describe electron transfer processes in photosystem I, “Modeling Electron Transfer in Photosystem I” Makita and Hastings (2016) .
机译:使用蓝细菌menB -突变光系统I粒子获得了时间分辨的298和77K的可见光和红外吸收差光谱数据,该粒子具有几个结合在A1结合位点中的非天然醌。获得了具有系统醌(2-甲基-3-植基-1,4-萘醌),2-溴-1,4-萘醌,2-氯-1,4-萘醌,2-甲基-1的光系统I粒子的数据。并入了4-4-萘醌,2,3-二溴-1、4-萘醌,2,3-二氯-1,4-萘醌和9,10-蒽醌。在可见光谱范围内在487和703nm处获得了瞬态吸收数据,在红外区获得了1950–1100 cm -1 。通过拟合时间分辨的红外和可见数据获得的时间常数非常吻合。所测量的时间常数对于开发合适的动力学模型至关重要,该动力学模型可以描述光系统I中的电子传输过程,“光系统I中的电子传输建模” Makita and Hastings(2016)。

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