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Exploration of the Peptide Recognition of an Amiloride-sensitive FMRFamide Peptide-gated Sodium Channel

机译:酰胺化物敏感的FMRF酰胺肽门控钠通道的肽识别探索

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摘要

FMRFamide (Phe-Met-Arg-Phe-NH2)-activated sodium channel (FaNaC) is an amiloride-sensitive sodium channel activated by endogenous tetrapeptide in invertebrates, and belongs to the epithelial sodium channel/degenerin (ENaC/DEG) superfamily. The ENaC/DEG superfamily differs markedly in its means of activation, such as spontaneously opening or gating by mechanical stimuli or tissue acidosis. Recently, it has been observed that a number of ENaC/DEG channels can be activated by small molecules or peptides, indicating that the ligand-gating may be an important feature of this superfamily. The peptide ligand control of the channel gating might be an ancient ligand-gating feature in this superfamily. Therefore, studying the peptide recognition of FaNaC channels would advance our understanding of the ligand-gating properties of this superfamily of ion channels. Here we demonstrate that Tyr-131, Asn-134, Asp-154, and Ile-160, located in the putative upper finger domain of Helix aspersa FaNaC (HaFaNaC) channels, are key residues for peptide recognition of this ion channel. Two HaFaNaC specific-insertion motifs among the ENaC/DEG superfamily, residing at the putative α4-α5 linker of the upper thumb domain and the α6-α7 linker of the upper knuckle domain, are also essential for the peptide recognition of HaFaNaC channels. Chemical modifications and double mutant cycle analysis further indicated that those two specific inserts and key residues in the upper finger domain together participate in peptide recognition of HaFaNaC channels. This ligand recognition site is distinct from that of acid-sensing ion channels (ASICs) by a longer distance between the recognition site and the channel gate, carrying useful information about the ligand gating and the evolution of the trimeric ENaC/DEG superfamily of ion channels.
机译:FMRFamide(Phe-Met-Arg-Phe-NH2)激活的钠通道(FaNaC)是无脊椎动物中内源性四肽激活的阿米洛利敏感的钠通道,属于上皮钠通道/变性素(ENaC / DEG)超家族。 ENaC / DEG超家族的激活方式显着不同,例如通过机械刺激或组织酸中毒自发打开或门控。最近,已经观察到许多ENaC / DEG通道可以被小分子或肽激活,这表明配体门控可能是该超家族的重要特征。通道门控的肽配体控制可能是这个超家族中古老的配体门控特征。因此,研究FaNaC通道的肽识别将增进我们对该离子通道超家族的配体门控特性的了解。在这里,我们证明位于螺旋as曲霉FaNaC(HaFaNaC)通道的推定上指结构域中的Tyr-131,Asn-134,Asp-154和Ile-160是肽段识别该离子通道的关键残基。 ENaC / DEG超家族中的两个HaFaNaC特异性插入基序,分别位于上拇指域的假定α4-α5接头和上指关节域的α6-α7接头,对于HaFaNaC通道的肽段识别也必不可少。化学修饰和双突变周期分析进一步表明,在上指结构域中的这两个特定插入物和关键残基一起参与了HaFaNaC通道的肽识别。该配体识别位点与酸敏感离子通道(ASIC)的区别在于识别位点与通道门之间的距离更长,携带了有关配体门控和离子通道三聚体ENaC / DEG超家族进化的有用信息。

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