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Chemoaffinity revisited: Dscams, protocadherins, and neural circuit assembly

机译:重新审视化学亲和力:Dscam,原钙粘着蛋白和神经回路组装

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The chemoaffinity hypothesis for neural circuit assembly posits that axons and their targets bear matching molecular labels that endow neurons with unique identities and specify synapses between appropriate partners. Here, we focus on two intriguing candidates for fulfilling this role, Drosophila Dscams and vertebrate clustered protocadherins (Pcdhs). In each, a complex genomic locus encodes large numbers of neuronal transmembrane proteins with homophilic binding specificity, individual members of which are expressed combinatorially. Although these properties suggest that Dscams and Pcdhs could act as specificity molecules, they may do so in ways that challenge traditional views of how neural circuits assemble.
机译:神经回路装配的化学亲和力假设认为,轴突及其靶标带有匹配的分子标记,这些标记赋予神经元独特的身份并指定适当伴侣之间的突触。在这里,我们专注于两个有趣的候选人,以履行这一职责,果蝇Dscams和脊椎动物簇原钙粘蛋白(Pcdhs)。在每个基因组中,一个复杂的基因组位点编码大量具有同型结合特异性的神经元跨膜蛋白,它们的各个成员以组合方式表达。尽管这些特性表明Dscams和Pcdhs可以作为特异性分子,但它们可能以挑战神经回路组装传统观点的方式发挥作用。

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