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Cellular Distribution of Innexin 1 and 2 Gap Junctional Channel Proteins in Epithelia of the Drosophila Embryo

机译:果蝇胚胎上皮中Innexin 1和2间隙连接通道蛋白的细胞分布

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摘要

Invertebrate gap junctions are composed of Innexin channel proteins that are structurally and functionally analogous to the connexins in vertebrates. In situ hybridization experiments have shown that most of the eight known innexin genes in Drosophila are expressed in a complex and overlapping temporal and spatial profile, with several members showing high levels of expression in developing epithelia of the embryo. To further study the cellular roles of Innexins, we have generated antibodies against Innexins 1 and 2 and studied their protein distribution in the developing embryo. We find that both Innexins are co-expressed in a number of epithelial tissues including the epidermis, the gut and the salivary glands. On the cellular level, we find both proteins localized to the membranes of epithelial cells. Immunohistochemical analysis using cell polarity markers indicates that Innexin 1 is predominantly localized to the baso-lateral domain of epithelial cells, basal to septate junctions. In contrast, we find a variable positioning of Innexin 2 along the apico-basal axis of epithelial cells depending on the type of tissue and organ. Our findings suggest that the distribution of Innexin channel proteins to specific membrane domains of epithelial cells is regulated by tissue specific factors during the development of epithelia in the fly embryo.
机译:无脊椎动物的缝隙连接由Innexin通道蛋白组成,该蛋白在结构和功能上类似于脊椎动物的连接蛋白。原位杂交实验表明,果蝇中八个已知的内毒素基因中的大多数以复杂且重叠的时空分布表达,其中一些成员在胚胎的发育中的上皮细胞中表达高水平。为了进一步研究Innexins的细胞作用,我们产生了针对Innexins 1和2的抗体,并研究了它们在发育中的胚胎中的蛋白质分布。我们发现,两种Innexins在多种上皮组织(包括表皮,肠道和唾液腺)中共表达。在细胞水平上,我们发现这两种蛋白均位于上皮细胞膜上。使用细胞极性标记的免疫组织化学分析表明Innexin 1主要位于上皮细胞的基底外侧结构域,从基础到分隔连接。相反,我们发现Innexin 2沿上皮细胞的顶基轴的可变位置,具体取决于组织和器官的类型。我们的发现表明Innexin通道蛋白到上皮细胞特定膜结构域的分布受果蝇上皮形成过程中组织特异性因子的调节。

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