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首页> 外文期刊>Biophysical Journal >Two open states with progressive proton selectivities in the branched channelrhodopsin-2 photocycle.
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Two open states with progressive proton selectivities in the branched channelrhodopsin-2 photocycle.

机译:在分支的channelrhodopsin-2光周期中具有渐进质子选择性的两个开放状态。

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Channelrhodopsins are light-gated ion channels that mediate vision in phototactic green algae like Chlamydomonas. In neurosciences, channelrhodopsins are widely used to light-trigger action potentials in transfected cells. All known channelrhodopsins preferentially conduct H(+). Previous studies have indicated the existence of an early and a late conducting state within the channelrhodopsin photocycle. Here, we show that for channelrhodopsin-2 expressed in Xenopus oocytes and HEK cells, the two open states have different ion selectivities that cause changes in the channelrhodopsin-2 reversal voltage during a light pulse. An enzyme kinetic algorithm was applied to convert the reversal voltages in various ionic conditions to conductance ratios for H(+) and divalent cations (Ca(2+) and/or Mg(2+)), as compared to monovalent cations (Na(+) and/or K(+)). Compared to monovalent cation conductance, the H(+) conductance, alpha, is approximately 3 x 10(6) and the divalent cation conductance, beta, is approximately 0.01 in the early conducting state. In the stationary mixture of the early and late states, alpha is larger and beta smaller, both by a factor of approximately 2. The results suggest that the ionic basis of light perception in Chlamydomonas is relatively nonspecific in the beginning of a light pulse but becomes more selective for protons during longer light exposures.
机译:通道视紫红质是光门控离子通道,可在衣藻(Chlamydomonas)等光战术绿藻中介导视觉。在神经科学中,视紫红质被广泛用于转染细胞中触发光的动作电位。所有已知的通道视紫红质优先进行H(+)。先前的研究表明,在视紫红质光循环中存在早期和晚期导电状态。在这里,我们显示出对于非洲爪蟾卵母细胞和HEK细胞中表达的通道视紫红质2,两个打开状态具有不同的离子选择性,这些离子选择性会导致光脉冲期间通道视紫红质2反向电压的变化。应用酶动力学算法将各种离子条件下的反向电压转换为H(+)和二价阳离子(Ca(2+)和/或Mg(2+))的电导比,与单价阳离子(Na( +)和/或K(+))。与一价阳离子电导率相比,在早期导电状态下,H(+)电导率α约为3 x 10(6),二价阳离子电导率β约为0.01。在早期和晚期状态的固定混合物中,α值较大且β值较小,两者均约为2倍。结果表明衣藻中光感的离子基础在光脉冲开始时相对非特异性,但变为在更长的曝光时间内对质子更具选择性。

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