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Platymonas subcordiformis Channelrhodopsin-2 Function

机译:腹膜下鸭嘴兽Channelrhodopsin-2功能

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摘要

The photocycle kinetics of Platymonas subcordiformis channelrhodopsin-2 (PsChR2), among the most highly efficient light-gated cation channels and the most blue-shifted channelrhodopsin, was studied by time-resolved absorption spectroscopy in the 340–650-nm range and in the 100-ns to 3-s time window. Global exponential fitting of the time dependence of spectral changes revealed six lifetimes: 0.60 μs, 5.3 μs, 170 μs, 1.4 ms, 6.7 ms, and 1.4 s. The sequential intermediates derived for a single unidirectional cycle scheme based on these lifetimes were found to contain mixtures of K, L, M, O, and P molecular states, named in analogy to photointermediates in the bacteriorhodopsin photocycle. The photochemistry is described by the superposition of two independent parallel photocycles. The analysis revealed that 30% of the photoexcited receptor molecules followed Cycle 1 through the K, M, O, and P states, whereas 70% followed Cycle 2 through the K, L, M, and O states. The recovered state, R, is spectrally close, but not identical, to the dark state on the seconds time scale. The two-cycle model of this high efficiency channelrhodopsin-2 (ChR) opens new perspectives in understanding the mechanism of channelrhodopsin function.
机译:通过时间分辨吸收光谱法在340-650nm范围内以及在100 ns至3 s的时间窗口。频谱变化的时间依赖性的全局指数拟合显示了六个寿命:0.60μs,5.3μs,170μs,1.4 ms,6.7 ms和1.4 s。发现基于这些寿命为单个单向循环方案得出的顺序中间体含有K,L,M,O和P分子态的混合物,类似于细菌视紫红质光循环中的光中间体而得名。通过两个独立的平行光周期的叠加来描述光化学。分析表明,有30%的光激发受体分子遵循第1周期的K,M,O和P状态,而70%遵循第2周期的K,L,M和O状态。在秒时间内,恢复状态R在光谱上与黑暗状态接近,但不完全相同。这种高效的通道视紫红质2(ChR)的两个周期模型为了解通道视紫红质功能的机理开辟了新的视角。

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