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Five nicotinic acetylcholine receptor subunits from the Morotoge shrimp, Pandalopsis japonica: cloning, tissue distribution, and functional expression in Xenopus oocytes

机译:虾(Pandalopsis japonica)虾中的五个烟碱乙酰胆碱受体亚基:爪蟾卵母细胞的克隆,组织分布和功能表达

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摘要

The nicotinic acetylcholine receptor (nAChR) is a member of the ligand-gated ion channel (LGIC) family and is composed of five subunits arranged around a central pore. Expressed sequence tag screening and traditional cloning strategies revealed five full-length cDNAs encoding nAChR subunit homologs (Paj3, Paj10, Paj11, Paj12, and Paj1) in the Morotoge shrimp, Pandalopsis japonica. The nAChR subunits exhibited common structural characteristics, including a signal peptide sequence, a large N-terminal extracellular domain with conserved motifs for ligand binding (loops A-F), and a transmembrane (TM) domain with four hydrophobic TM motifs (TM1-TM4). Based on the conserved GEK motifs located just before TM2, all five nAChR subunits from P. japonica appear to be cation-selective ion channels. Among the five subunits, Paj3 and Paj1 clustered together with insect core groups, whereas Paj10, Paj11, and Paj12 were classified as a divergent group. Three distinct transcripts were identified in Paj3, presumably due to alternative splicing between TM3 and TM4, which may be involved in channel formation with other subunits. All five nAChR subunits were expressed predominantly in neuronal tissues, including the brain, sinus gland/X-organ complex, thoracic ganglia, and abdominal ganglia, with no significant differences in subunit expression levels among the neuronal tissues. The five shrimp nAChR subunits could not be functionally expressed in Xenopus oocytes, but coexpression of Paj1 and rat 4 subunit (R4) formed functional channels responding to acetylcholine. Functional expression of vertebrate subunit (R4) with invertebrate 1 subunit (Paj1) will expand our knowledge regarding the structural characteristics and molecular gating mechanism of invertebrate nAChRs.
机译:烟碱乙酰胆碱受体(nAChR)是配体门控离子通道(LGIC)家族的成员,由围绕中央孔排列的五个亚基组成。表达的序列标签筛选和传统的克隆策略揭示了在中华绒螯虾中的五个编码nAChR亚基同源物(Paj3,Paj10,Paj11,Paj12和Paj1)的全长cDNA。 nAChR亚基表现出共同的结构特征,包括信号肽序列,具有保守的配体结合基序的N末端大细胞外结构域(环A-F)和具有四个疏水性TM基序的跨膜(TM)结构域(TM1-TM4)。基于位于TM2之前的保守GEK基序,来自日本假单胞菌的所有五个nAChR亚基似乎都是阳离子选择性离子通道。在这五个亚基中,Paj3和Paj1与昆虫核心群聚在一起,而Paj10,Paj11和Paj12被分类为发散群。在Paj3中鉴定出三个截然不同的转录本,大概是由于TM3和TM4之间的可变剪接,这可能与其他亚基的通道形成有关。所有五个nAChR亚基主要在神经元组织中表达,包括脑,窦腺/ X器官复合体,胸神经节和腹部神经节,在神经元组织中亚基表达水平无显着差异。这五个虾的nAChR亚基不能在非洲爪蟾卵母细胞中功能性表达,但Paj1和大鼠4亚基(R4)的共表达形成了对乙酰胆碱有反应的功能性通道。具有无脊椎动物1亚基(Paj1)的脊椎动物亚基(R4)的功能表达将扩展我们关于无脊椎动物nAChRs的结构特征和分子门控机制的知识。

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