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Adherens junctions and β-catenin-mediated cell signalling in a non-metazoan organism

机译:非metazoan生物中的粘附连接和β-catenin介导的细胞信号传导

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Mechanical forces between cells have a principal role in the organization of animal tissues. Adherens junctions are an important component of these tissues, connecting cells through their actin cytoskeleton and allowing the assembly of tensile structures. At least one adherens junction protein, β-catenin, also acts as a signalling molecule, directly regulating gene expression. To date, adherens junctions have only been detected in metazoa, and therefore we looked for them outside the animal kingdom to examine their evolutionary origins. The non-metazoan Dictyostelium discoideum forms a multicellular, differentiated structure. Here we describe the discovery of actin-associated intercellular junctions in Dictyostelium. We have isolated a gene encoding a β-catenin homologue, aardvark, which is a component of the junctional complex, and, independently, is required for cell signalling. Our discovery of adherens junctions outside the animal kingdom shows that the dual role of β-catenin in cell-cell adhesion and cell signalling evolved before the origins of metazoa.
机译:细胞之间的机械力在动物组织的组织中起主要作用。粘附连接是这些组织的重要组成部分,通过其肌动蛋白细胞骨架连接细胞并允许组装拉伸结构。至少一种粘附连接蛋白,β-catenin,也起信号分子的作用,直接调节基因表达。迄今为止,粘附连接仅在后生动物中被发现,因此我们在动物界之外寻找它们以检查其进化起源。非metazoan Disctostelium Discoideum形成多细胞,分化的结构。在这里,我们描述了在网柄菌属中肌动蛋白相关的细胞间连接的发现。我们已经分离出一个编码β-catenin同源基因aardvark的基因,它是连接复合物的一个组成部分,并且独立地是细胞信号转导所必需的。我们在动物界以外的粘附连接处的发现表明,β-连环蛋白在细胞-细胞粘附和细胞信号转导中的双重作用在后生动物起源之前就已经进化了。

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