首页> 美国卫生研究院文献>The Journal of Neuroscience >KChIP-Like Auxiliary Subunits of Kv4 Channels Regulate Excitability of Muscle Cells and Control Male Turning Behavior during Mating in Caenorhabditis elegans
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KChIP-Like Auxiliary Subunits of Kv4 Channels Regulate Excitability of Muscle Cells and Control Male Turning Behavior during Mating in Caenorhabditis elegans

机译:Kv4通道的KChIP样辅助亚基调节秀丽隐杆线虫交配过程中肌肉细胞的兴奋性并控制男性转向行为。

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摘要

Voltage-gated Kv4 channels control the excitability of neurons and cardiac myocytes by conducting rapidly activating-inactivating currents. The function of Kv4 channels is profoundly modulated by K+ channel interacting protein (KChIP) soluble auxiliary subunits. However, the in vivo mechanism of the modulation is not fully understood. Here, we identified three C. elegans KChIP-like (ceKChIP) proteins, NCS-4, NCS-5, and NCS-7. All three ceKChIPs alter electrical characteristics of SHL-1, a C. elegans Kv4 channel ortholog, currents by slowing down inactivation kinetics and shifting voltage dependence of activation to more hyperpolarizing potentials. Native SHL-1 current is completely abolished in cultured myocytes of Triple KO worms in which all three ceKChIP genes are deleted. Reexpression of NCS-4 partially restored expression of functional SHL-1 channels, whereas NCS-4(efm), a NCS-4 mutant with impaired Ca2+-binding ability, only enhanced expression of SHL-1 proteins, but failed to transport them from the Golgi apparatus to the cell membrane in body wall muscles of Triple KO worms. Moreover, translational reporter revealed that NCS-4 assembles with SHL-1 K+ channels in male diagonal muscles. Deletion of either ncs-4 or shl-1 significantly impairs male turning, a behavior controlled by diagonal muscles during mating. The phenotype of the ncs-4 null mutant could be rescued by reexpression of NCS-4, but not NCS-4(efm), further emphasizing the importance of Ca2+ binding to ceKChIPs in regulating native SHL-1 channel function. Together, these data reveal an evolutionarily conserved mechanism underlying the regulation of Kv4 channels by KChIPs and unravel critical roles of ceKChIPs in regulating muscle cell excitability and animal behavior in C. elegans.
机译:电压门控的Kv4通道通过传导快速激活-失活电流来控制神经元和心肌细胞的兴奋性。 Kv4通道的功能受K + 通道相互作用蛋白(KChIP)可溶性辅助亚基的调节。但是,调节的体内机制尚未完全了解。在这里,我们确定了三种秀丽隐杆线虫KChIP样(ceKChIP)蛋白,NCS-4,NCS-5和NCS-7。所有三个ceKChIP均通过减慢失活动力学并将激活的电压依赖性转移到更多的超极化电位上来改变SHL-1(秀丽隐杆线虫Kv4通道直系同源物)的电学特性。在所有三个ceKChIP基因都缺失的Triple KO蠕虫的培养的心肌细胞中,天然SHL-1电流被完全消除。 NCS-4的重新表达部分恢复了功能性SHL-1通道的表达,而NCS-4(efm)是一种具有Ca 2 + 结合能力受损的NCS-4突变体,仅能增强SHL-β的表达。 1种蛋白质,但未能将它们从高尔基体转运至Triple KO蠕虫体壁肌肉的细胞膜。此外,翻译记者透露,NCS-4在男性对角肌中与SHL-1 K + 通道组装在一起。删除ncs-4或shl-1会严重损害男性的交配,这是在交配过程中由斜肌控制的行为。 ncs-4 null突变体的表型可以通过重新表达NCS-4来挽救,而不能通过NCS-4(efm)的表达来挽救,这进一步强调了Ca 2 + 与ceKChIPs结合在调节天然SHL中的重要性。 -1通道功能。总之,这些数据揭示了由KChIP调节Kv4通道的进化保守机制,以及ceKChIP在调节秀丽隐杆线虫的肌肉细胞兴奋性和动物行为方面的关键作用。

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