首页> 外文期刊>The Journal of Physiology >Dipeptidyl-peptidase-like-proteins confer high sensitivity to the scorpion toxin AmmTX3 to Kv4-mediated A-type K+ channels
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Dipeptidyl-peptidase-like-proteins confer high sensitivity to the scorpion toxin AmmTX3 to Kv4-mediated A-type K+ channels

机译:二肽基肽酶样蛋白赋予蝎毒素AmmTX3对Kv4介导的A型K +通道高度敏感性

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摘要

K+ channels containing Kv4.2 and Kv4.3 pore-forming subunits mediate most of the subthreshold-operating somatodendritic A-type K+ current in CNS neurons. These channels are believed to be important in regulating the frequency of repetitive firing, the backpropagation of action potential into dendrites, and dendritic integration and plasticity. Moreover, they have been implicated in several diseases from pain to epilepsy and autism spectrum disorders. The lack of toxins that specifically and efficiently block these channels has hampered studies aimed at confirming their functional role and their involvement in disease. AmmTX3 and other related members of the α-KTX15 family of scorpion toxins have been shown to block the A-type K+ current in cultured neurons, but their specificity has been questioned because the toxins do not efficiently block the currents mediated by Kv4.2 or Kv4.3 subunits expressed in heterologous cells. Here we show that the high-affinity blockade of Kv4.2 and Kv4.3 channels by AmmTX3 depends on the presence of the auxiliary subunits DPP6 and DPP10. These proteins are thought to be components of the Kv4 channel complex in neurons and to be important for channel expression in dendrites. These studies validate the use of AmmTX3 as a blocker of the Kv4-mediated A-type K+ current in neurons.
机译:包含Kv4.2和Kv4.3孔形成亚基的K +通道介导了CNS神经元中大多数亚阈值操作性树突状A型K +电流。这些通道被认为对于调节重复发射的频率,动作电位向树突的反向传播以及树突的整合和可塑性至关重要。而且,它们与多种疾病有关,从疼痛到癫痫病和自闭症谱系障碍。缺乏能特异性和有效地阻断这些通道的毒素,阻碍了旨在确认其功能作用和参与疾病的研究。已经显示出AmmTX3和蝎毒素的α-KTX15家族其他相关成员可以阻断培养的神经元中的A型K +电流,但是由于其毒素不能有效地阻断Kv4.2或Kv4.2介导的电流,因此其特异性受到质疑。在异源细胞中表达的Kv4.3亚基。在这里,我们显示AmmTX3对Kv4.2和Kv4.3通道的高亲和力阻断取决于辅助亚基DPP6和DPP10的存在。这些蛋白质被认为是神经元中Kv4通道复合物的组成部分,对于树突中的通道表达很重要。这些研究证实了AmmTX3作为神经元中Kv4介导的A型K +电流的阻滞剂的用途。

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