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Voltage-clamp fluorometry analysis of structural rearrangements of ATP-gated channel P2X2 upon hyperpolarization

机译:超极化对ATP门控通道P2X2结构重排的电压钳缺失分析

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摘要

Gating of the ATP-activated channel P2X2 has been shown to be dependent not only on [ATP] but also on membrane voltage, despite the absence of a canonical voltage-sensor domain. We aimed to investigate the structural rearrangements of rat P2X2 during ATP- and voltage-dependent gating, using a voltage-clamp fluorometry technique. We observed fast and linearly voltage-dependent fluorescence intensity (F) changes at Ala337 and Ile341 in the TM2 domain, which could be due to the electrochromic effect, reflecting the presence of a converged electric field. We also observed slow and voltage-dependent F changes at Ala337, which reflect structural rearrangements. Furthermore, we determined that the interaction between Ala337 in TM2 and Phe44 in TM1, which are in close proximity in the ATP-bound open state, is critical for activation. Taking these results together, we propose that the voltage dependence of the interaction within the converged electric field underlies the voltage-dependent gating.
机译:尽管没有规范电压 - 传感器域,但已经显示出ATP激活通道P2X2的栅极不仅依赖于[ATP],还依赖于膜电压。我们旨在使用电压夹型荧光技术研究ATP和电压依赖性门控期间大鼠P2X2的结构重排。我们在TM2结构域中观察到ALA337和ILE341的快速和线性电压依赖性荧光强度(F)变化,这可能是由于电致变色效应,反映了融合电场的存在。我们还观察到ALA337的缓慢和电压相关的F变化,反映了结构重排。此外,我们确定TM1中的TM2和PHE44中的ALA337之间的相互作用,其在ATP结合的开放状态下紧密接近,对于激活至关重要。将这些结果与这些结果一起提出,融合电场内相互作用的电压依赖性下潜依赖的门控。

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