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Assembly of ROMK1 (Kir 1.1a) inward rectifier K+ channel subunits involves multiple interaction sites.

机译:ROMK1(Kir 1.1a)内向整流器K +通道亚基的组装涉及多个相互作用位点。

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摘要

The ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characterized by cytoplasmic N- and C-termini and a core region of two transmembrane helices flanking a pore-forming segment. To delineate the general regions mediating the assembly of ROMK1 subunits we constructed epitope-tagged N-terminal, C-terminal, and transmembrane segment deletion mutants. Nonfunctional subunits with N-terminal, core region, and C-terminal deletions had dominant negative effects when coexpressed with wild-type ROMK1 subunits in Xenopus oocytes. In contrast, coexpression of these nonfunctional subunits with Kv 2.1 (DRK1) did not suppress Kv 2.1 currents in control oocytes. Interactions between epitope-tagged mutant and wild-type ROMK1 subunits were studied in parallel by immunoprecipitating [35S]-labeled oocyte membrane proteins. Complexes containing both wild-type and mutant subunits that retained H5, M2, and C-terminal regions were coimmunoprecipitated to a greater extent than complexes consisting of wild-type and mutant subunits with core region and/or C-terminal deletions. The present findings are consistent with the hypothesis that multiple interaction sites located in the core region and cytoplasmic termini of ROMK1 subunits mediate homomultimeric assembly.
机译:ROMK1(Kir 1.1a)通道是由亚基的四聚体复合物形成的,每个亚基的特征是胞质N和C末端以及位于成孔段两侧的两个跨膜螺旋的核心区域。为了描述介导ROMK1亚基装配的一般区域,我们构建了表位标记的N末端,C末端和跨膜片段缺失突变体。当在非洲爪蟾卵母细胞中与野生型ROMK1亚基共表达时,具有N末端,核心区域和C末端缺失的非功能性亚基具有显着的负作用。相反,这些非功能性亚基与Kv 2.1(DRK1)的共表达不能抑制对照卵母细胞中Kv 2.1的电流。通过免疫沉淀[35S]标记的卵母细胞膜蛋白,并行研究了表位标记的突变体与野生型ROMK1亚基之间的相互作用。包含保留H5,M2和C端区域的野生型和突变亚基的复合物比包含核心区域和/或C端缺失的野生型和突变亚基的复合物在更大程度上被共免疫沉淀。本发现与以下假设一致:位于ROMK1亚基的核心区域和细胞质末端的多个相互作用位点介导同源多聚体装配。

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