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Intracellular linkers are involved in Mg2+-dependent modulation of the Eag potassium channel

机译:细胞内接头参与Eag钾通道的Mg2 +依赖性调节

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摘要

Modulation of activation kinetics by divalent ions is one of the characteristic features of Eag channels. Here, we report that Mg2+-dependent deceleration of Eag channel activation is significantly attenuated by a G297E mutation, which exhibits a gain-of-function phenotype in Drosophila by suppressing the effect of shaker mutation on behavior and neuronal excitability. The G297 residue is located in the intracellular linker of transmembrane segments S2 and S3, and is thus not involved in direct binding of Mg2+ ions. Moreover, mutation of the only positively charged residue in the other intracellular linker between S4 and S5 also results in a dramatic reduction of Mg2+-dependent modulation of Eag activation kinetics. Collectively, the two mutations in eag eliminate or even paradoxically reverse the effect of Mg2+ on channel activation and inactivation kinetics. Together, these results suggest an important role of the intracellular linker regions in gating processes of Eag channels.
机译:二价离子对活化动力学的调节是Eag通道的特征之一。在这里,我们报道G297E突变大大减弱了Mg 2 + 依赖的Eag通道激活的减速作用,该突变通过抑制振动筛突变对行为的影响而在果蝇中表现出功能增强的表型。和神经元兴奋性。 G297残基位于跨膜段S2和S3的胞内接头中,因此不参与Mg 2 + 离子的直接结合。此外,S4和S5之间的另一个胞内连接子中唯一带正电的残基突变也导致Mg 2 + 依赖的Eag激活动力学的调节显着降低。总的来说,eag中的两个突变消除或什至矛盾地逆转了Mg 2 + 对通道激活和失活动力学的影响。在一起,这些结果表明细胞内接头区域在Eag通道的门控过程中的重要作用。

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