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刺胞动物中隔膜连接的结构分子成分表明真核生物上皮连接的起源。

Structural molecular components of septate junctions in cnidarians point to the origin of epithelial junctions in eukaryotes.

机构信息

Marine Biology Department, Centre Scientifique de Monaco, Quai Antoine Premier, Monaco

Marine Biology Department, Centre Scientifique de Monaco, Quai Antoine Premier, Monaco.

出版信息

Mol Biol Evol. 2015 Jan;32(1):44-62. doi: 10.1093/molbev/msu265. Epub 2014 Sep 21.

Abstract

Septate junctions (SJs) insure barrier properties and control paracellular diffusion of solutes across epithelia in invertebrates. However, the origin and evolution of their molecular constituents in Metazoa have not been firmly established. Here, we investigated the genomes of early branching metazoan representatives to reconstruct the phylogeny of the molecular components of SJs. Although Claudins and SJ cytoplasmic adaptor components appeared successively throughout metazoan evolution, the structural components of SJs arose at the time of Placozoa/Cnidaria/Bilateria radiation. We also show that in the scleractinian coral Stylophora pistillata, the structural SJ component Neurexin IV colocalizes with the cortical actin network at the apical border of the cells, at the place of SJs. We propose a model for SJ components in Cnidaria. Moreover, our study reveals an unanticipated diversity of SJ structural component variants in cnidarians. This diversity correlates with gene-specific expression in calcifying and noncalcifying tissues, suggesting specific paracellular pathways across the cell layers of these diploblastic animals.

摘要

隔膜连接(SJs)确保了无脊椎动物上皮细胞的屏障特性,并控制溶质的旁细胞扩散。然而,它们在Metazoa 中的分子成分的起源和进化尚未得到明确证实。在这里,我们研究了早期分支后生动物代表的基因组,以重建 SJs 分子成分的系统发育。尽管 Claudins 和 SJ 细胞质衔接成分在整个后生动物进化过程中相继出现,但 SJs 的结构成分出现在 Placozoa/Cnidaria/Bilateria 辐射的时候。我们还表明,在硬珊瑚石珊瑚 Stylophora pistillata 中,结构 SJ 成分 Neurexin IV 与细胞顶端边界的皮质肌动蛋白网络共定位,在 SJs 的位置。我们提出了一种 Cnidaria 中 SJ 成分的模型。此外,我们的研究揭示了 cnidarians 中 SJ 结构成分变体出人意料的多样性。这种多样性与钙化和非钙化组织中的基因特异性表达相关,表明这些二胚层动物的细胞层之间存在特定的旁细胞途径。

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