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Structures of Teneurin adhesion receptors reveal an ancient fold for cell-cell interaction

机译:Teneurin粘附受体的结构揭示了细胞与细胞相互作用的古老折叠

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Teneurins are ancient cell–cell adhesion receptors that are vital for brain development and synapse organisation. They originated in early metazoan evolution through a horizontal gene transfer event when a bacterial YD-repeat toxin fused to a eukaryotic receptor. We present X-ray crystallography and cryo-EM structures of two Teneurins, revealing a ~200?kDa extracellular super-fold in which eight sub-domains form an intricate structure centred on a spiralling YD-repeat shell. An alternatively spliced loop, which is implicated in homophilic Teneurin interaction and specificity, is exposed and thus poised for interaction. The N-terminal side of the shell is ‘plugged’ via a fibronectin-plug domain combination, which defines a new class of YD proteins. Unexpectedly, we find that these proteins are widespread amongst modern bacteria, suggesting early metazoan receptor evolution from a distinct class of proteins, which today includes both bacterial proteins and eukaryotic Teneurins.
机译:Teneurins是古老的细胞间粘附受体,对大脑发育和突触组织至关重要。当细菌YD重复毒素融合到真核受体时,它们通过水平基因转移事件起源于早期的后生动物进化。我们介绍了两个Teneurins的X射线晶体学和低温电磁结构,揭示了〜200?kDa的细胞外超折叠,其中八个亚结构域形成了以螺旋形YD重复壳为中心的复杂结构。牵涉同源Teneurin相互作用和特异性的另一种剪接环被暴露,因此准备进行相互作用。外壳的N端通过纤连蛋白-插入结构域组合被“插入”,这定义了一类新的YD蛋白。出乎意料的是,我们发现这些蛋白质在现代细菌中广泛分布,表明早期的后生动物受体受体从一种独特的蛋白质进化而来,今天该蛋白质既包括细菌蛋白质,又包括真核生物腱蛋白。

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