Jonusaite Sima, Oulhen Nathalie, Izumi Yasushi, Furuse Mikio, Yamamoto Takashi, Sakamoto Naoaki, Wessel Gary, Heyland Andreas
Department of Integrative Biology, University of Guelph, Guelph, ON N1G 2W1, Canada.
Department of Molecular and Cell Biology and Biochemistry, Brown University, Providence, RI, 02912, United States.
Dev Biol. 2023 Mar;495:21-34. doi: 10.1016/j.ydbio.2022.12.007. Epub 2022 Dec 29.
Septate junctions (SJs) evolved as cell-cell junctions that regulate the paracellular barrier and integrity of epithelia in invertebrates. Multiple morphological variants of SJs exist specific to different epithelia and/or phyla but the biological significance of varied SJ morphology is unclear because the knowledge of the SJ associated proteins and their functions in non-insect invertebrates remains largely unknown. Here we report cell-specific expression of nine candidate SJ genes in the early life stages of the sea urchin Strongylocentrotus purpuratus. By use of in situ RNA hybridization and single cell RNA-seq we found that the expression of selected genes encoding putatively SJ associated transmembrane and cytoplasmic scaffold molecules was dynamically regulated during epithelial development in the embryos and larvae with different epithelia expressing different cohorts of SJ genes. We focused a functional analysis on SpMesh, a homolog of the Drosophila smooth SJ component Mesh, which was highly enriched in the endodermal epithelium of the mid- and hindgut. Functional perturbation of SpMesh by both CRISPR/Cas9 mutagenesis and vivo morpholino-mediated knockdown shows that loss of SpMesh does not disrupt the formation of the gut epithelium during gastrulation. However, loss of SpMesh resulted in a severely reduced gut-paracellular barrier as quantitated by increased permeability to 3-5 kDa FITC-dextran. Together, these studies provide a first look at the molecular SJ physiology during the development of a marine organism and suggest a shared role for Mesh-homologous proteins in forming an intestinal barrier in invertebrates. Results have implications for consideration of the traits underlying species-specific sensitivity of marine larvae to climate driven ocean change.
分隔连接(SJs)是作为调节无脊椎动物上皮细胞旁屏障和完整性的细胞间连接而进化的。SJs存在多种形态变体,特定于不同的上皮组织和/或门类,但不同SJ形态的生物学意义尚不清楚,因为在非昆虫无脊椎动物中,与SJ相关的蛋白质及其功能的知识在很大程度上仍然未知。在这里,我们报告了九种候选SJ基因在紫海胆早期生命阶段的细胞特异性表达。通过原位RNA杂交和单细胞RNA测序,我们发现,在胚胎和幼虫的上皮发育过程中,编码假定的SJ相关跨膜和细胞质支架分子的选定基因的表达受到动态调节,不同的上皮组织表达不同的SJ基因群。我们重点对SpMesh进行了功能分析,它是果蝇平滑SJ成分Mesh的同源物,在中肠和后肠的内胚层上皮中高度富集。通过CRISPR/Cas9诱变和体内吗啉代介导的敲低对SpMesh进行功能扰动,结果表明,SpMesh的缺失不会破坏原肠胚形成过程中肠上皮的形成。然而,SpMesh的缺失导致肠细胞旁屏障严重降低,这通过对3-5 kDa FITC-葡聚糖的通透性增加来定量。总之,这些研究首次揭示了海洋生物发育过程中的分子SJ生理学,并表明Mesh同源蛋白在无脊椎动物形成肠道屏障中具有共同作用。研究结果对于考虑海洋幼虫对气候驱动的海洋变化的物种特异性敏感性的潜在特征具有启示意义。