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Stabilization of the Conductive Conformation of a Voltage-gated K+ (Kv) Channel

机译:电压门控K +(Kv)通道的导电构型的稳定性

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摘要

Voltage-gated K+ (Kv) channels are molecular switches that sense membrane potential and in response open to allow K+ ions to diffuse out of the cell. In these proteins, sensor and pore belong to two distinct structural modules. We previously showed that the pore module alone is a robust yet dynamic structural unit in lipid membranes and that it senses potential and gates open to conduct K+ with unchanged fidelity. The implication is that the voltage sensitivity of K+ channels is not solely encoded in the sensor. Given that the coupling between sensor and pore remains elusive, we asked whether it is then possible to convert a pore module characterized by brief openings into a conductor with a prolonged lifetime in the open state. The strategy involves selected probes targeted to the filter gate of the channel aiming to modulate the probability of the channel being open assayed by single channel recordings from the sensorless pore module reconstituted in lipid bilayers. Here we show that the premature closing of the pore is bypassed by association of the filter gate with two novel open conformation stabilizers: an antidepressant and a peptide toxin known to act selectively on Kv channels. Such stabilization of the conductive conformation of the channel is faithfully mimicked by the covalent attachment of fluorescein at a cysteine residue selectively introduced near the filter gate. This modulation prolongs the occupancy of permeant ions at the gate. It is this longer embrace between ion and gate that we conjecture underlies the observed stabilization of the conductive conformation. This study provides a new way of thinking about gating.
机译:电压门控的K + (Kv)通道是感应膜电位的分子开关,并在响应时打开以允许K + 离子扩散到细胞外。在这些蛋白质中,传感器和孔属于两个不同的结构模块。我们以前曾证明,毛孔模块是脂质膜中一个强大而又动态的结构单元,它能感应电势并打开门以传导保真度不变的K + 。这意味着K + 通道的电压灵敏度并非仅在传感器中编码。考虑到传感器与孔隙之间的耦合仍然难以捉摸,我们询问是否有可能将以短暂开口为特征的孔隙模块转换为在打开状态下具有较长使用寿命的导体。该策略涉及以通道的过滤门为目标的选定探针,旨在通过脂质双层中重构的无传感器孔模块的单通道记录来调节通道打开的可能性。在这里,我们显示过滤器闸门与两种新型开放构象稳定剂的结合绕过了孔的过早封闭:一种抗抑郁药和一种已知可选择性作用于Kv通道的肽毒素。荧光素在选择性引入滤栅附近引入的半胱氨酸残基上的共价连接可忠实地模拟通道导电构象的这种稳定。这种调制延长了离子在门处的占有率。我们推测,正是离子与栅极之间的这种较长的包围关系奠定了观察到的导电构象稳定性的基础。这项研究为门控提供了一种新的思维方式。

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