首页> 外文期刊>The Journal of biological chemistry >In Channelrhodopsin-2 Glu-90 Is Crucial for Ion Selectivity and Is Deprotonated during the Photocycle
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In Channelrhodopsin-2 Glu-90 Is Crucial for Ion Selectivity and Is Deprotonated during the Photocycle

机译:在通道丛中-2Glu-90中对于离子选择性至关重要,在光环期间脱助

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摘要

The light-activated microbial ion channel channelrhodopsin-2 (ChR2) is a powerful tool to study cellular processes with high spatiotemporal resolution in the emerging field of optogenetics. To customize the channel properties for optogenetic experiments, a detailed understanding of its molecular reaction mechanism is essential. Here, Glu-90, a key residue involved in the gating and selectivity mechanism of the ion channel is characterized in detail. The deprotonation of Glu-90 during the photocycle is elucidated by time-resolved FTIR spectroscopy, which seems to be part of the opening mechanism of the conductive pore. Furthermore, Glu-90 is crucial to ion selectivity as also revealed by mutation of this residue combined with voltage clamp experiments. By dynamic homology modeling, we further hypothesized that the conductive pore is flanked by Glu-90 and located between helices A, B, C, and G.
机译:光活化的微生物离子通道通道渠道 - 2(CHR2)是一种强大的工具,用于研究具有高时尚分辨率在光源的高空间分辨率的细胞过程。为了定制致灭绝实验的通道性质,详细了解其分子反应机制是必不可少的。这里,将Glu-90,离子通道的门控和选择性机理中涉及的关键残留物进行了详细。通过时间分辨的FTIR光谱阐明在光循环期间Glu-90的去质子化,这似乎是导电孔的开口机构的一部分。此外,Glu-90对离子选择性至关重要,也可以通过该残余物的突变与电压钳实验结合的突变揭示。通过动态同源造型,我们进一步假设导电孔隙由Glu-90侧翼并位于螺旋A,B,C和G之间。

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