首页> 外文期刊>The Journal of Physiology >Multiprotein assembly of Kv4.2, KChIP3 and DPP10 produces ternary channel complexes with ISA-like properties.
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Multiprotein assembly of Kv4.2, KChIP3 and DPP10 produces ternary channel complexes with ISA-like properties.

机译:Kv4.2,KChIP3和DPP10的多蛋白组装产生具有ISA样特性的三元通道复合物。

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摘要

Kv4 pore-forming subunits are the principal constituents of the voltage-gated K+ channel underlying somatodendritic subthreshold A-type currents (I(SA)) in neurones. Two structurally distinct types of Kv4 channel modulators, Kv channel-interacting proteins (KChIPs) and dipeptidyl-peptidase-like proteins (DPLs: DPP6 or DPPX, DPP10 or DPPY), enhance surface expression and modify functional properties. Since KChIP and DPL distributions overlap in the brain, we investigated the potential coassembly of Kv4.2, KChIP3 and DPL proteins, and the contribution of DPLs to ternary complex properties. Immunoprecipitation results show that KChIP3 and DPP10 associate simultaneously with Kv4.2 proteins in rat brain as well as heterologously expressing Xenopus oocytes, indicating Kv4.2 + KChIP3 + DPP10 multiprotein complexes. Consistent with ternary complex formation, coexpression of Kv4.2, KChIP3 and DPP10 in oocytes and CHO cells results in current waveforms distinct from the arithmetic sum of Kv4.2 + KChIP3 and Kv4.2+ DPP10 currents. Furthermore, the Kv4.2 + KChIP3 + DPP10 channels recover from inactivation very rapidly (tau(rec) approximately 18-26 ms), closely matching that of native I(SA) and significantly faster than the recovery of Kv4.2 + KChIP3 or Kv4.2 + DPP10 channels. For comparison, identical triple coexpression experiments were performed using DPP6 variants. While most results are similar, the Kv4.2 + KChIP3 + DPP6 channels exhibit inactivation that slows with increasing membrane potential, resulting in inactivation slower than that of Kv4.2 + KChIP3 + DPP10 channels at positive voltages. In conclusion, the native neuronal subthreshold A-type channel is probably a macromolecular complex formed from Kv4 and a combination of both KChIP and DPL proteins, with the precise composition of channel alpha and auxiliary subunits underlying tissue and regional variability in I(SA) properties.
机译:Kv4孔形成亚基是神经元中树突状亚阈值A型电流(I(SA))潜在的电压门控K +通道的主要成分。两种结构上不同的Kv4通道调节剂,Kv通道相互作用蛋白(KChIPs)和二肽基肽酶样蛋白(DPL:DPP6或DPPX,DPP10或DPPY),可增强表面表达并修饰功能特性。由于KChIP和DPL分布在大脑中重叠,因此我们研究了Kv4.2,KChIP3和DPL蛋白质的潜在共组装,以及DPL对三元复杂特性的贡献。免疫沉淀结果表明,KChIP3和DPP10与大鼠脑中的Kv4.2蛋白同时结合,并异源表达非洲爪蟾卵母细胞,表明Kv4.2 + KChIP3 + DPP10多蛋白复合物。与三元复合物形成相一致,在卵母细胞和CHO细胞中Kv4.2,KChIP3和DPP10的共表达导致电流波形不同于Kv4.2 + KChIP3和Kv4.2 + DPP10电流的算术和。此外,Kv4.2 + KChIP3 + DPP10通道非常快速地从失活中恢复(tau(rec)大约18-26 ms),与天然I(SA)的通道非常匹配,并且比Kv4.2 + KChIP3或Kv4.2 + DPP10频道。为了进行比较,使用DPP6变体进行了相同的三重共表达实验。尽管大多数结果相似,但Kv4.2 + KChIP3 + DPP6通道的失活随着膜电位的增加而减慢,导致失活比正电压下Kv4.2 + KChIP3 + DPP10通道的失活更慢。总之,天然神经元亚阈值A型通道可能是由Kv4以及KChIP和DPL蛋白的组合形成的大分子复合物,通道α和辅助亚基的精确组成是组织基础和I(SA)属性的区域变异性。

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