首页> 外文期刊>Journal of General Physiology >Binding of κ-Conotoxin PVIIA to Shaker K~+ Channels Reveals Different K~+ and Rb~+ Occupancies within the Ion Channel Pore
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Binding of κ-Conotoxin PVIIA to Shaker K~+ Channels Reveals Different K~+ and Rb~+ Occupancies within the Ion Channel Pore

机译:κ-芋螺毒素PVIIA与摇床K〜+通道的结合揭示了离子通道孔内不同的K〜+和Rb〜+占用率。

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The x-ray structure of the KcsA channel at different [K~+] and [Rb~+] provided insight into how K~+ channels might achieve high selectivity and high K~+ transit rates and showed marked differences between the occupancies of the two ions within the ion channel pore. In this study, the binding of κ-conotoxin PVIIA (κ-PVIIA) to Shaker K~+ channel in the presence of K~+ and Rb~+ was investigated. It is demonstrated that the complex results obtained were largely rationalized by differences in selectivity filter occupancy of this 6TM channels as predicted from the structural work on KcsA. κ-PVIIA inhibition of the Shaker K~+ channel differs in the closed and open state. When K~+ is the only permeant ion, increasing extracellular [K~+] decreases κ-PVIIA affinity for closed channels by decreasing the "on" binding rate, but has no effect on the block of open channels, which is influenced only by the intracellular [K~+]. In contrast, extracellular [Rb~+] affects both closed- and open-channel binding. As extracellular [Rb~+] increases, (a) binding to the closed channel is slightly destabilized and acquires faster kinetics, and (b) open channel block is also destabilized and the lowest block seems to occur when the pore is likely filled only by Rb+. These results suggest that the nature of the permeant ions determines both the occupancy and the location of the pore site from which they interact with κ-PVIIA binding. Thus, our results suggest that the permeant ion(s) within a channel pore can determine its functional and pharmacological properties.
机译:KcsA通道在不同的[K〜+]和[Rb〜+]处的X射线结构为我们提供了有关K〜+通道如何实现高选择性和高K〜+传输速率的见解,并且显示了KcsA通道的占用率之间存在显着差异。离子通道孔内有两个离子。在这项研究中,研究了κ-芋螺毒素PVIIA(κ-PVIIA)在K〜+和Rb〜+存在下与Shaker K〜+通道的结合。结果表明,根据在KcsA上进行的结构研究,该6TM通道的选择性滤光片占用率的差异在很大程度上使获得的复杂结果合理化。摇床K〜+通道的κ-PVIIA抑制在关闭和打开状态下有所不同。当K〜+是唯一的渗透离子时,增加细胞外[K〜+]会降低“ on”结合速率,从而降低κ-PVIIA对封闭通道的亲和力,但对开放通道的阻滞没有影响,仅受开口离子的影响细胞内[K〜+]。相反,细胞外[Rb〜+]影响封闭通道和开放通道的结合。随着细胞外[Rb〜+]的增加,(a)与封闭通道的结合会略微不稳定,并获得更快的动力学;(b)开放通道的阻滞也将变得不稳定,并且当可能仅由毛细孔填充时,最低的阻滞似乎发生了Rb +。这些结果表明,渗透离子的性质决定了其与κ-PVIIA结合相互作用的位置和孔位的位置。因此,我们的结果表明通道孔内的渗透离子可以决定其功能和药理特性。

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