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Kir2.4 and Kir2.1 K+ channel subunits co-assemble: a potential new contributor to inward rectifier current heterogeneity

机译:Kir2.4和Kir2.1 K +通道亚基共组装:潜在的新贡献者是内向整流器电流异质性

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摘要

Heteromeric channel assembly is a potential source of physiological variability. The potential significance of Kir2 subunit heterotetramerization has been controversial, but recent findings suggest that heteromultimerization of Kir2.1-3 may be significant. This study was designed to investigate whether the recently described Kir2.4 subunit can form heterotetramers with the important subunit Kir2.1, and if so, to investigate whether the resulting heterotetrameric channels are functional. Co-expression of either dominant negative Kir2.1 or Kir2.4 subunits in Xenopus oocytes with either wild-type Kir2.1 or 2.4 strongly decreased resulting current amplitude. To examine physical association between Kir2.1 and Kir2.4, Cos-7 cells were co-transfected with a His6-tagged Kir2.1 subunit (Kir2.1-His6) and a FLAG-tagged Kir2.4 subunit (Kir2.4-FLAG). After pulldown with a His6-binding resin, Kir2.4-FLAG could be detected in the eluted cell lysate by Western blotting, indicating co-assembly of Kir2.1-His6 and Kir2.4-FLAG. Expression of a tandem construct containing covalently linked Kir2.1 and 2.4 subunits led to robust current expression. Kir2.1-Kir2.4 tandem subunit expression, as well as co-injection of Kir2.1 and Kir2.4 cRNA into Xenopus oocytes, produced currents with barium sensitivity greater than that of Kir2.1 or Kir2.4 subunit expression alone. These results show that Kir2.4 subunits can co-assemble with Kir2.1 subunits, and that co-assembled channels are functional, with properties different from those of Kir2.4 or Kir2.1 alone. Since Kir2.1 and Kir2.4 mRNAs have been shown to co-localize in the CNS, Kir2.1 and Kir2.4 heteromultimers might play a role in the heterogeneity of native inward rectifier currents.
机译:异聚通道组装是生理变异性的潜在来源。 Kir2亚基异源四聚化的潜在意义一直存在争议,但最近的发现表明Kir2.1-3异源多聚化可能很重要。这项研究旨在调查最近描述的Kir2.4亚基是否可以与重要的亚基Kir2.1形成异四聚体,如果可以,则调查所得异四聚体通道是否具有功能。在非洲爪蟾卵母细胞中与野生型Kir2.1或2.4共表达显性阴性Kir2.1或Kir2.4亚基强烈降低了产生的电流幅度。为了检查Kir2.1和Kir2.4之间的物理关联,将Cos-7细胞与带有His6标签的Kir2.1亚基(Kir2.1-His6)和带有FLAG标签的Kir2.4亚基(Kir2.4)共转染。 -旗)。用His6结合树脂下拉后,可通过蛋白质印迹在洗脱的细胞裂解物中检测到Kir2.4-FLAG,表明Kir2.1-His6和Kir2.4-FLAG是共装配的。包含共价连接的Kir2.1和2.4亚基的串联构建体的表达导致稳健的当前表达。 Kir2.1-Kir2.4串联亚基表达以及将Kir2.1和Kir2.4 cRNA共注入非洲爪蟾卵母细胞中,产生的钡敏感电流大于仅Kir2.1或Kir2.4亚基表达的钡敏感电流。这些结果表明,Kir2.4亚基可以与Kir2.1亚基共组装,并且共组装的通道具有功能,其特性不同于单独的Kir2.4或Kir2.1。由于已显示Kir2.1和Kir2.4 mRNA在CNS中共定位,因此Kir2.1和Kir2.4异源多聚体可能在天然内向整流电流的异质性中起作用。

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