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来自美洲大蠊(Periplaneta americana)的一种新型钠通道TipE样辅助亚基的分子和功能特性

Molecular and functional characterization of a novel sodium channel TipE-like auxiliary subunit from the American cockroach Periplaneta americana.

作者信息

Bourdin Céline M, Guérineau Nathalie C, Murillo Laurence, Quinchard Sophie, Dong Ke, Legros Christian

机构信息

Laboratoire Récepteurs et Canaux Ioniques Membranaires (RCIM), UPRES EA 2647/USC, INRA 1330, SFR QUASAV n° 4207, Université d'Angers, UFR Sciences, 2 boulevard Lavoisier, F-49045, Angers Cedex, France.

Laboratoire de Biologie Neurovasculaire et Mitochondriale Intégrée, CNRS UMR 6214, INSERM U1083, UFR de Sciences Médicales, Université d'Angers, rue Haute de Reculée, F-49045, Angers Cedex, France; Institut de Génomique Fonctionnelle, UMR CNRS 5203, INSERM U661, Université de Montpellier, 141 rue de la Cardonille, F-34094, Montpellier Cedex 5, France.

出版信息

Insect Biochem Mol Biol. 2015 Nov;66:136-44. doi: 10.1016/j.ibmb.2015.10.008. Epub 2015 Oct 23.

DOI:10.1016/j.ibmb.2015.10.008
PMID:26524962
Abstract

In Drosophila melanogaster, the functions of voltage-gated sodium (Nav) channels are modulated by TipE and its orthologs. Here, we describe a novel TipE homolog of the American cockroach, Periplaneta americana, called PaTipE. Like DmTipE, PaTipE mRNAs are ubiquitously expressed. Surprisingly, PaTipE mRNA was undetectable in neurosecretory cells identified as dorsal unpaired median neurons. Phylogenetic analysis placed this new sequence in TipE clade, indicating an independent evolution from a common ancestor. Contrary to previous reports, our data indicate that the auxiliary subunits of insect Nav channels are very distant from the mammalian BKCa auxiliary subunits. To decipher the functional roles of PaTipE, we characterized the gating properties of DmNav1-1 channels co-expressed with DmTipE or PaTipE, in Xenopus oocytes. Compared to DmTipE, PaTipE increased Na(+) currents by a 4.2-fold. The voltage-dependence of steady-state fast inactivation of DmNav1-1/PaTipE channels was shifted by 5.8 mV to more negative potentials than that of DmNav1-1/DmTipE channels. DmNav1-1/PaTipE channels recovered 3.2-fold slower from the fast-inactivated state than DmNav1-1/DmTipE channels. In conclusion, this study supports that the insect Nav auxiliary subunits share functional features with their mammalian counterparts, although structurally and phylogenetically distant.

摘要

在黑腹果蝇中,电压门控钠(Nav)通道的功能受TipE及其直系同源物调节。在此,我们描述了一种美洲大蠊的新型TipE同源物,称为PaTipE。与DmTipE一样,PaTipE mRNA在各处均有表达。令人惊讶的是,在被鉴定为背侧无配对中间神经元的神经分泌细胞中未检测到PaTipE mRNA。系统发育分析将这个新序列置于TipE进化枝中,表明它是从一个共同祖先独立进化而来的。与之前的报道相反,我们的数据表明昆虫Nav通道的辅助亚基与哺乳动物大电导钙激活钾通道(BKCa)的辅助亚基差异很大。为了解析PaTipE的功能作用,我们在非洲爪蟾卵母细胞中对与DmTipE或PaTipE共表达的DmNav1-1通道的门控特性进行了表征。与DmTipE相比,PaTipE使钠电流增加了4.2倍。DmNav1-1/PaTipE通道稳态快速失活的电压依赖性比DmNav1- /DmTipE通道向更负的电位偏移了5.8 mV。DmNav1-1/PaTipE通道从快速失活状态恢复的速度比DmNav1-1/DmTipE通道慢3.2倍。总之,本研究支持昆虫Nav辅助亚基与其哺乳动物对应物具有功能特征,尽管在结构和系统发育上有差异。

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