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α-和γ-原钙黏蛋白对神经元存活和树突自回避的组合效应。

Combinatorial Effects of Alpha- and Gamma-Protocadherins on Neuronal Survival and Dendritic Self-Avoidance.

机构信息

Program for Neurosciences and Mental Health, Hospital for Sick Children, Department of Molecular Genetics, University of Toronto, Toronto, Ontario M5G 0A4, Canada and.

Department of Molecular and Cellular Biology and Center for Brain Science, Harvard University, Cambridge, Massachusetts 02138.

出版信息

J Neurosci. 2018 Mar 14;38(11):2713-2729. doi: 10.1523/JNEUROSCI.3035-17.2018. Epub 2018 Feb 8.

Abstract

The clustered protocadherins (Pcdhs) comprise 58 cadherin-related proteins encoded by three tandemly arrayed gene clusters, -α, -β, and -γ (, , and , respectively). Pcdh isoforms from different clusters are combinatorially expressed in neurons. They form multimers that interact homophilically and mediate a variety of developmental processes, including neuronal survival, synaptic maintenance, axonal tiling, and dendritic self-avoidance. Most studies have analyzed clusters individually. Here, we assessed functional interactions between and clusters. To circumvent neonatal lethality associated with deletion of , we used Crispr-Cas9 genome editing in mice to combine a constitutive mutant allele with a conditional allele. We analyzed roles of Pcdhas and Pcdhgs in the retina and cerebellum from mice (both sexes) lacking one or both clusters. In retina, Pcdhgs are essential for survival of inner retinal neurons and dendritic self-avoidance of starburst amacrine cells, whereas Pcdhas are dispensable for both processes. Deletion of both and clusters led to far more dramatic defects in survival and self-avoidance than deletion alone. Comparisons of an allelic series of mutants support the conclusion that Pcdhas and Pcdhgs function together in a dose-dependent and cell-type-specific manner to provide a critical threshold of Pcdh activity. In the cerebellum, Pcdhas and Pcdhgs also cooperate to mediate self-avoidance of Purkinje cell dendrites, with modest but significant defects in either single mutant and dramatic defects in the double mutant. Together, our results demonstrate complex patterns of redundancy between Pcdh clusters and the importance of Pcdh cluster diversity in postnatal CNS development. The formation of neural circuits requires diversification and combinatorial actions of cell surface proteins. Prominent among them are the clustered protocadherins (Pcdhs), a family of ∼60 neuronal recognition molecules. Pcdhs are encoded by three closely linked gene clusters called -α, -β, and -γ. The Pcdhs mediate a variety of developmental processes, including neuronal survival, synaptic maintenance, and spatial patterning of axons and dendrites. Most studies to date have been limited to single clusters. Here, we used genome editing to assess interactions between -α and -γ gene clusters. We examined two regions of the CNS, the retina and cerebellum and show that the 14 α-Pcdhs and 22 γ-Pcdhs act synergistically to mediate neuronal survival and dendrite patterning.

摘要

簇状原钙黏蛋白(protocadherins,Pcdhs)由三个串联排列的基因簇(α、β 和 γ)编码,包含 58 种钙黏蛋白相关蛋白(分别为[α]、[β]和[γ])。不同簇的 Pcdh 同种型在神经元中组合表达。它们形成同源相互作用的多聚体,介导多种发育过程,包括神经元存活、突触维持、轴突平铺和树突自回避。大多数研究都单独分析了簇。在这里,我们评估了[α]和[γ]簇之间的功能相互作用。为了避免与[α]缺失相关的新生鼠致死,我们使用 Crispr-Cas9 基因组编辑在小鼠中组合了一个组成型[α]突变等位基因和一个条件性[γ]等位基因。我们分析了缺乏一个或两个簇的小鼠(雌雄两性)视网膜和小脑中 Pcdhas 和 Pcdhgs 的作用。在视网膜中,Pcdhgs 对于内视网膜神经元的存活和星爆型双极细胞树突的自回避是必需的,而 Pcdhas 对于这两个过程都是可有可无的。[α]和[γ]缺失簇的缺失导致存活和自回避的缺陷远比[α]缺失更严重。对一系列等位基因突变体的比较支持以下结论:Pcdhas 和 Pcdhgs 以剂量依赖和细胞类型特异性的方式共同发挥作用,提供了 Pcdh 活性的关键阈值。在小脑,Pcdhas 和 Pcdhgs 也共同介导浦肯野细胞树突的自回避,单个突变体有适度但显著的缺陷,而双突变体有明显的缺陷。总之,我们的结果表明 Pcdh 簇之间存在复杂的冗余模式,以及 Pcdh 簇多样性在出生后中枢神经系统发育中的重要性。神经回路的形成需要细胞表面蛋白的多样化和组合作用。其中突出的是簇状原钙黏蛋白(protocadherins,Pcdhs),这是一个由约 60 种神经元识别分子组成的家族。Pcdhs 由三个紧密连锁的基因簇编码,称为[α]、[β]和[γ]。Pcdhs 介导多种发育过程,包括神经元存活、突触维持和轴突和树突的空间模式形成。迄今为止,大多数研究都仅限于单个簇。在这里,我们使用基因组编辑来评估[α]和[γ]基因簇之间的相互作用。我们检查了中枢神经系统的两个区域,即视网膜和小脑,并表明 14 种α-Pcdhs 和 22 种γ-Pcdhs 协同作用以介导神经元存活和树突模式形成。

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