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ISA Channel Complexes Include Four Subunits Each of DPP6 and Kv4.2*

机译:ISA通道复合体包括DPP6和Kv4.2 *的四个子单元

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摘要

Kv4 potassium channels produce rapidly inactivating currents that regulate excitability of muscles and nerves. To reconstitute the neuronal A-type current ISA, Kv4 subunits assemble with DPP6, a single transmembrane domain accessory subunit. DPP6 alters function—accelerating activation, inactivation, and recovery from inactivation—and increases surface expression. We sought here to determine the stoichiometry of Kv4 and DPP6 in complexes using functional and biochemical methods. First, wild type channels formed from subunit monomers were compared with channels carrying subunits linked in tandem to enforce 4:4 and 4:2 assemblies (Kv4.2-DPP6 and Kv4.2-Kv4.2-DPP6). Next, channels were overexpressed and purified so that the molar ratio of subunits in complexes could be assessed by direct amino acid analysis. Both biophysical and biochemical methods indicate that ISA channels carry four subunits each of Kv4.2 and DPP6.
机译:Kv4钾离子通道产生迅速失活的电流,调节肌肉和神经的兴奋性。为了重建神经元A型现行ISA,Kv4亚基与DPP6(单个跨膜结构域辅助亚基)组装在一起。 DPP6改变功能-加速激活,失活和从失活中恢复-并增加表面表达。我们在这里寻求使用功能性和生化方法确定复合物中Kv4和DPP6的化学计量。首先,将由亚基单体形成的野生型通道与带有串联连接的亚基的通道进行比较,以强制执行4:4和4:2装配(Kv4.2-DPP6和Kv4.2-Kv4.2-DPP6)。接下来,将通道过表达和纯化,以便可以通过直接氨基酸分析评估复合物中亚基的摩尔比。生物物理和生化方法均表明ISA通道带有四个亚基,分别为Kv4.2和DPP6。

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