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The medicinal leech genome encodes 21 innexin genes: different combinations are expressed by identified central neurons

机译:药用水ech基因组编码21种内毒素基因:已鉴定的中枢神经元表达不同的组合

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Gap junctional proteins are important components of signaling pathways required for the development and ongoing functions of all animal tissues, particularly the nervous system, where they function in the intracellular and extracellular exchange of small signaling factors and ions. In animals whose genomes have been sufficiently sequenced, large families of these proteins, connexins, pannexins, and innexins, have been found, with 25 innexins in the nematode Caenorhabditis elegans Starich et al. (Cell Commun Adhes 8: 311–314, 2001) and at least 37 connexins in the zebrafish Danio rerio Cruciani and Mikalsen (Biol Chem 388:253–264, 2009). Having recently sequenced the medicinal leech Hirudo verbana genome, we now report the presence of 21 innexin genes in this species, nine more than we had previously reported from the analysis of an EST-derived transcriptomic database Dykes and Macagno (Dev Genes Evol 216: 185–97, 2006); Macagno et al. (BMC Genomics 25:407, 2010). Gene structure analyses show that, depending on the leech innexin gene, they can contain from 0 to 6 introns, with closely related paralogs showing the same number of introns. Phylogenetic trees comparing Hirudo to another distantly related leech species, Helobdella robusta, shows a high degree of orthology, whereas comparison to other annelids shows a relatively low level. Comparisons with other Lophotrochozoans, Ecdyzozoans and with vertebrate pannexins suggest a low number (one to two) of ancestral innexin/pannexins at the protostome/deuterostome split. Whole-mount in situ hybridization for individual genes in early embryos shows that ∼50% of the expressed innexins are detectable in multiple tissues. Expression analyses using quantitative PCR show that ∼70% of the Hirudo innexins are expressed in the nervous system, with most of these detected in early development. Finally, quantitative PCR analysis of several identified adult neurons detects the presence of different combinations of innexin genes, a property that may underlie the participation of these neurons in different adult coupling circuits.
机译:间隙连接蛋白是所有动物组织(特别是神经系统)的发育和正在进行的功能所需的信号传导途径的重要组成部分,它们在小信号传导因子和离子的细胞内和细胞外交换中起作用。在基因组已被充分测序的动物中,发现了这些蛋白质,连接蛋白,泛蛋白和内毒素的大家族,其中线虫秀丽隐杆线虫中有25种内毒素。Starich等。 (Cell Commun Adhes 8:311–314,2001)和斑马鱼Danio rerio Cruciani和Mikalsen中的至少37种连接蛋白(Biol Chem 388:253–264,2009)。最近对药用水echHirudo verbana基因组进行了测序,现在我们报告了该物种中21种内毒素基因的存在,比我们以前从EST转录组数据库Dykes和Macagno的分析报告的数量多了9种(Dev Genes Evol 216:185 – 97,2006年); Macagno等。 (BMC Genomics 25:407,2010)。基因结构分析表明,取决于水ech内毒素基因,它们可以包含0至6个内含子,密切相关的旁系同源物显示相同数目的内含子。将Hirudo与另一种远缘水ech物种Helobdellarobusta进行比较的系统发育树显示出较高的正交性,而与其他类动物相比则显示出较低的水平。与其他风毛虫,蜕皮动物和脊椎动物pannexins的比较表明,在protostome / deuterostome分裂时,祖先innexin / pannexins的数量很少(一到两个)。早期胚胎中单个基因的全量原位杂交表明,在多个组织中可检测到约50%的表达的内毒素。使用定量PCR进行的表达分析表明,约有70%的Hirudo内毒素在神经系统中表达,其中大多数在早期发育中被检测到。最后,对几种已鉴定的成年神经元进行定量PCR分析,可以检测到内毒素基因不同组合的存在,该特性可能是这些神经元参与不同成年耦合回路的基础。

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