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栉水母动物中的间隙连接。

Gap Junctions in Ctenophora.

机构信息

Whitney Laboratory for Marine Bioscience, University of Florida, St. Augustine, FL, USA.

Department of Neuroscience and McKnight Brain Institute, University of Florida, Gainesville, FL, USA.

出版信息

Methods Mol Biol. 2024;2757:361-381. doi: 10.1007/978-1-0716-3642-8_16.

Abstract

Gap junction proteins form specialized intercellular communication channels, including electrical synapses, that regulate cellular metabolism and signaling. We present a molecular inventory of the gap junction proteins-innexins (INX-like) in ctenophores, focusing on two reference species, Pleurobrachia bachei and Mnemiopsis leidyi. Innexins were identified in more than 15 ctenophore species, including such genera as Euplokamis, Pukia, Hormiphora, Bolinopsis, Cestum, Ocyropsis, Dryodora, Beroe, benthic ctenophores, Coeloplana and Vallicula, and undescribed species of Mertensiidae. The observed diversity of innexins resulted from the independent expansion of this family from the common ancestor of ctenophores. Innexins show the conserved topology with four transmembrane domains connected by two extracellular loops, which bridge intracellular gaps. However, INX-like genes have highly diverse exon organization and low percentage identity for their amino acid sequences within the same species and between ctenophore species. Such a broad scope of molecular diversity differs from innexins in other phyla. We predicted posttranslational modifications in innexins: 249 and 188 for M. leidyi and P. bachei, respectively. Neither their number nor their locations were conserved within or between species. When the number of posttranslational modifications is factored into the innexins' radiation, the potential for molecular and physiological diversity within gap junctions of ctenophores is almost unfathomable. RNA-seq and in situ hybridization data revealed that innexins are expressed across embryogenesis, including early cleavage stages and gastrulation. They are abundant in all adult tissues, with the highest expression level in the aboral organ (the major integrative center and the gravity sensor in ctenophores), followed by tentacles and comb plates. Nevertheless, each organ and tissue has a unique combination of innexins, suggesting their involvement in complex integrative functions and behaviors of ctenophores.

摘要

间隙连接蛋白形成专门的细胞间通讯通道,包括电突触,调节细胞代谢和信号转导。我们展示了栉水母中间隙连接蛋白连接蛋白(INX-like)的分子目录,重点介绍了两个参考物种,即 Pleurobrachia bachei 和 Mnemiopsis leidyi。连接蛋白在超过 15 种栉水母物种中被鉴定出来,包括 Euplokamis、Pukia、Hormiphora、Bolinopsis、Cestum、Ocyropsis、Dryodora、Beroe、底栖栉水母、Coeloplana 和 Vallicula 以及 Mertensiidae 未描述的物种。观察到的连接蛋白多样性是由于这个家族从栉水母的共同祖先中独立扩张而来的。连接蛋白具有保守的拓扑结构,由四个跨膜结构域组成,由两个细胞外环连接,细胞外环在细胞内形成间隙。然而,INX-like 基因在同一物种内和栉水母物种之间具有高度多样化的外显子组织和低氨基酸序列同一性。这种广泛的分子多样性与其他门的连接蛋白不同。我们预测了连接蛋白中的翻译后修饰:M. leidyi 和 P. bachei 分别有 249 和 188 个。无论是在物种内还是物种间,它们的数量和位置都没有保守。当将翻译后修饰的数量纳入连接蛋白的辐射时,栉水母间隙连接中的分子和生理多样性的潜力几乎是不可估量的。RNA-seq 和原位杂交数据显示,连接蛋白在胚胎发生过程中表达,包括早期分裂阶段和原肠胚形成。它们在所有成年组织中都很丰富,在口器(栉水母的主要整合中心和重力传感器)中表达水平最高,其次是触手和梳板。然而,每个器官和组织都有独特的连接蛋白组合,表明它们参与了栉水母的复杂整合功能和行为。

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