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首页> 外文期刊>Journal of Insect Physiology >Formation of functional innexin hemichannels, as well as gap junctional channels, in an insect cell line, NIAs-AeAl-2, derived from Asian tiger mosquito Aedes albopictus (Diptera: Culicidae): A partial but significant contribution of innexin 2
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Formation of functional innexin hemichannels, as well as gap junctional channels, in an insect cell line, NIAs-AeAl-2, derived from Asian tiger mosquito Aedes albopictus (Diptera: Culicidae): A partial but significant contribution of innexin 2

机译:在昆虫细胞系中形成功能性innexin的形成,以及间隙连接通道,源自亚洲虎蚊虫AEDES Albopictus(Diptera:Culicidae):Innexin 2的局部但重要贡献

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In vertebrates, gap junctions and hemichannels consisting of connexins are important cell surface structures for communication with neighboring cells and for the regulation of various cell functions. To date, various gap-junction-related proteins have been found, including innexins in invertebrates and pannexins in vertebrates. Significant contributions of gap junctions by innexins and (hemi-)channels by pannexins to numerous functions have been reported. Verification of the presence and functional significance of innexin hemichannels, however, remains a gap in our knowledge in innexin physiology. In this study, we revealed the localization of an innexin protein (innexin 2) on the cell surface in mosquito tissues and cultured cells. Furthermore, we demonstrated the presence of functional hemichannels, as well as gap junctions, in mosquito cells using dye transfer assays. The inward uptake of fluorescent dye was inhibited by anti-innexin 2 antibody. These results suggest that innexin hemichannels are formed to function in cultured mosquito cells, in at least a partially innexin 2-dependent manner. Although only a few studies on insect hemichannels have been published, innexin-based hemichannels, as well as innexin gap junctions, could also significantly contribute to insect intercellular signal transduction.
机译:在脊椎动物中,由Connexins组成的间隙结和血管槽是用于与相邻电池通信的重要细胞表面结构,并用于调节各种细胞功能。迄今为止,已经发现了各种各样的间隙相关蛋白质,包括无脊椎动物中的intexins和脊椎动物的Pannexins。据报道,帕南克斯对普通峡通道和(半)渠道对众多职能的显着贡献。然而,核查Innexin Hemichannels的存在和功能意义仍然是我们在Innexin生理学中的知识中的差距。在这项研究中,我们揭示了Intexin蛋白(Innexin 2)在蚊子组织和培养细胞中的细胞表面上的定位。此外,我们证明了使用染料转移测定的蚊子细胞中的功能性血管和间隙结的存在。通过抗Innexin 2抗体抑制荧光染料的向内摄取。这些结果表明Innexin血管槽形成为在培养的蚊虫细胞中起作用,至少部分innexin 2依赖性方式。虽然仅发表了一些关于昆虫血管箱的研究,但基于Innexin的血管槽,以及Innexin Gap Connctions也可能显着促进昆虫细胞间信号转导。

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