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Structure of an innexin gap junction channel and cryo-EM sample preparation

机译:内毒素间隙连接通道的结构和冷冻EM样品制备

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摘要

Gap junction channels are essential for mediating intercellular communication in most multicellular organisms. Two gene families encode gap junction channels, innexin and connexin. Although the sequence similarity between these two families based on bioinformatics is not conclusively determined, the gap junction channels encoded by these two gene families are structurally and functionally analogous. We recently reported an atomic structure of an invertebrate innexin gap junction channel using single-particle cryo-electron microscopy. Our findings revealed that connexin and innexin families share several structural properties with regard to their monomeric and oligomeric structures, while simultaneously suggesting a diversity of gap junction channels in nature. This review summarizes cutting-edge progress toward determining an innexin gap junction channel structure, as well as essential tips for preparing cryo-electron microscopy samples for high-resolution structural analysis of an innexin gap junction channel.
机译:间隙连接通道对于介导大多数多细胞生物中的细胞间通讯至关重要。两个基因家族编码间隙连接通道,连接蛋白和连接蛋白。尽管不能最终确定基于生物信息学的这两个家族之间的序列相似性,但是由这两个基因家族编码的间隙连接通道在结构和功能上相似。我们最近报道了使用单粒子低温电子显微镜观察的无脊椎动物内毒素间隙连接通道的原子结构。我们的发现表明,连接蛋白和连接蛋白家族在其单体和低聚结构方面具有几种结构特性,同时暗示了自然界中间隙连接通道的多样性。这篇综述总结了确定内毒素间隙连接通道结构的最新进展,以及制备用于内毒素间隙连接通道的高分辨率结构分析的冷冻电子显微镜样品的基本技巧。

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