首页> 美国卫生研究院文献>The Journal of Biological Chemistry >T-type Channels Become Highly Permeable to Sodium Ions Using an Alternative Extracellular Turret Region (S5-P) Outside the Selectivity Filter
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T-type Channels Become Highly Permeable to Sodium Ions Using an Alternative Extracellular Turret Region (S5-P) Outside the Selectivity Filter

机译:使用选择性滤光片之外的其他细胞外转塔区域(S5-P)T型通道变得对钠离子具有高度渗透性

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摘要

T-type (Cav3) channels are categorized as calcium channels, but invertebrate ones can be highly sodium-selective channels. We illustrate that the snail LCav3 T-type channel becomes highly sodium-permeable through exon splicing of an extracellular turret and descending helix in domain II of the four-domain Cav3 channel. Highly sodium-permeable T-type channels are generated without altering the invariant ring of charged residues in the selectivity filter that governs calcium selectivity in calcium channels. The highly sodium-permeant T-type channel expresses in the brain and is the only splice isoform expressed in the snail heart. This unique splicing of turret residues offers T-type channels a capacity to serve as a pacemaking sodium current in the primitive heart and brain in lieu of Nav1-type sodium channels and to substitute for voltage-gated sodium channels lacking in many invertebrates. T-type channels would also contribute substantially to sodium leak conductances at rest in invertebrates because of their large window currents.
机译:T型(Cav3)通道被归类为钙通道,但无脊椎动物通道可能是钠选择性高的通道。我们举例说明了蜗牛LCav3 T型通道通过细胞外炮塔的外显子剪接和四结构域Cav3通道的结构域II的下降螺旋变成高度钠可渗透的。在不改变控制钙通道中钙选择性的选择性过滤器中带电残基的不变环的情况下,生成了具有高钠渗透性的T型通道。高钠渗透性的T型通道在大脑中表达,并且是蜗牛心脏中唯一表达的剪接异构体。这种独特的炮塔残基拼接为T型通道提供了在原始心脏和大脑中起搏性钠电流的功能,从而取代了Nav1型钠通道,并替代了许多无脊椎动物缺乏的电压门控钠通道。 T型通道由于其大的窗口电流,也将大大促进无脊椎动物静止时的钠泄漏电导。

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