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单细胞 RNA 测序揭示神经连接蛋白可变剪接图谱的发育起源和个体发生稳定性。

Single-Cell RNA-Seq Reveals Developmental Origins and Ontogenetic Stability of Neurexin Alternative Splicing Profiles.

机构信息

Laboratory of Neural Connectivity, Brain Research Institute, Faculties of Medicine and Natural Sciences, University of Zürich, Winterthurerstrasse 190, 8057 Zürich, Switzerland.

Laboratory of Neural Connectivity, Brain Research Institute, Faculties of Medicine and Natural Sciences, University of Zürich, Winterthurerstrasse 190, 8057 Zürich, Switzerland.

出版信息

Cell Rep. 2019 Jun 25;27(13):3752-3759.e4. doi: 10.1016/j.celrep.2019.05.090.

Abstract

Neurexins are key synaptic organizers that are expressed in thousands of alternatively spliced isoforms. Because transsynaptic neurexin interactions with different postsynaptic molecules are largely isoform dependent, a cell type-level census of different neurexin isoforms could predict molecular interactions relating to synapse identity and function. Using single-cell transcriptomics to study the origin of neurexin diversity in multiple murine mature and embryonic cell types, we have discovered shared neurexin expression patterns in developmentally related cells. By comparing neurexin profiles in immature embryonic neurons, we show that neurexin profiles are specified during early development and remain unchanged throughout neuronal maturation. Thus, our findings reveal ontogenetic stability and provide a cell type-level census of neurexin isoform expression in the cortex.

摘要

神经连接蛋白是关键的突触组织者,有数千种选择性剪接的异构体。由于突触间的神经连接蛋白与不同的突触后分子的相互作用在很大程度上依赖于异构体,因此对不同神经连接蛋白异构体进行细胞类型水平的普查,可以预测与突触身份和功能相关的分子相互作用。本研究使用单细胞转录组学技术来研究多种成熟和胚胎鼠细胞类型中神经连接蛋白多样性的起源,我们发现了在发育相关细胞中存在共享的神经连接蛋白表达模式。通过比较不成熟胚胎神经元中的神经连接蛋白图谱,我们表明神经连接蛋白图谱是在早期发育过程中确定的,并在神经元成熟过程中保持不变。因此,我们的发现揭示了神经连接蛋白异构体表达的个体发生稳定性,并提供了皮质中神经连接蛋白异构体表达的细胞类型水平普查。

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