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Dual Effect of Phosphatidyl (4,5)-Bisphosphate PIP2 on Shaker K+ Channels

机译:磷脂酰(4,5) - 磷酸磷酸磷酸磷酸盐磷酸磷酸盐磷酸盐磷酸盐钾

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Phosphatidylinositol (4,5)-bisphosphate (PIP2) is a phospholipid of the plasma membrane that has been shown to be a key regulator of several ion channels. Functional studies and more recently structural studies of Kir channels have revealed the major impact of PIP2 on the open state stabilization. A similar effect of PIP2 on the delayed rectifiers Kv7.1 and Kv11.1, two voltage-gated K+ channels, has been suggested, but the molecular mechanism remains elusive and nothing is known on PIP2 effect on other Kv such as those of the Shaker family. By combining giant-patch ionic and gating current recordings in COS-7 cells, and voltage-clamp fluorimetry in Xenopus oocytes, both heterologously expressing the voltage-dependent Shaker channel, we show that PIP2 exerts 1) a gain-of-function effect on the maximal current amplitude, consistent with a stabilization of the open state and 2) a loss-of-function effect by positive-shifting the activation voltage dependence, most likely through a direct effect on the voltage sensor movement, as illustrated by molecular dynamics simulations.
机译:磷脂酰肌醇(4,5) - 磷酸磷酸(PIP2)是血浆膜的磷脂,其已被示出为几个离子通道的关键调节器。吉尔渠道的功能研究和最近结构研究揭示了PIP2对开放状态稳定的主要影响。已经提出了PIP2对延迟整流器KV7.1和KV11.1,两个电压门控K +通道的类似效果,但分子机制仍然是难以捉摸的,并且在诸如振动器的其他KV上的PIP2效应没有任何内容。家庭。通过将巨型贴片离子和浇注电流记录结合在COS-7细胞中,Xenopus卵母细胞中的电压 - 夹型氟替代率,既异常表达电压依赖振荡器通道,我们都表明PIP2施加1)效果的增益效果通过积极移位激活电压依赖性,最小可能通过对电压传感器运动的直接影响,这是一种最大电流幅度,与打开状态的稳定性效果一致,正如通过分子动态模拟所示。

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