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突触细胞粘附分子neurexin在星状海葵中的神经元和非神经元功能

Neuronal and non-neuronal functions of the synaptic cell adhesion molecule neurexin in Nematostella vectensis.

作者信息

Guzman Christine, Mohri Kurato, Nakamura Ryotaro, Miyake Minato, Tsuchiya Yuko, Tomii Kentaro, Watanabe Hiroshi

机构信息

Evolutionary Neurobiology Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan.

Department of Biology, Institute of Zoology, University of Fribourg, CH-1700, Fribourg, Switzerland.

出版信息

Nat Commun. 2024 Aug 1;15(1):6495. doi: 10.1038/s41467-024-50818-8.

Abstract

The evolutionary transition from diffusion-mediated cell-cell communication to faster, targeted synaptic signaling in animal nervous systems is still unclear. Genome sequencing analyses have revealed a widespread distribution of synapse-related genes among early-diverging metazoans, but how synaptic machinery evolved remains largely unknown. Here, we examine the function of neurexins (Nrxns), a family of presynaptic cell adhesion molecules with critical roles in bilaterian chemical synapses, using the cnidarian model, Nematostella vectensis. Delta-Nrxns are expressed mainly in neuronal cell clusters that exhibit both peptidergic and classical neurotransmitter signaling. Knockdown of δ-Nrxn reduces spontaneous peristalsis of N. vectensis polyps. Interestingly, gene knockdown and pharmacological studies suggest that δ-Nrxn is involved in glutamate- and glycine-mediated signaling rather than peptidergic signaling. Knockdown of the epithelial α-Nrxn reveals a major role in cell adhesion between ectodermal and endodermal epithelia. Overall, this study provides molecular, functional, and cellular insights into the pre-neural function of Nrxns, as well as key information for understanding how and why they were recruited to the synaptic machinery.

摘要

在动物神经系统中,从扩散介导的细胞间通讯向更快的、有针对性的突触信号传导的进化转变仍不清楚。基因组测序分析表明,突触相关基因在早期分化的后生动物中广泛分布,但突触机制是如何进化的在很大程度上仍然未知。在这里,我们使用刺胞动物模型——星状海葵(Nematostella vectensis)来研究神经连接蛋白(Nrxns)的功能,Nrxns是一类在前突触细胞粘附分子家族,在两侧对称动物的化学突触中起关键作用。δ-Nrxns主要在同时表现出肽能信号传导和经典神经递质信号传导的神经元细胞簇中表达。敲低δ-Nrxn会降低星状海葵息肉的自发蠕动。有趣的是,基因敲低和药理学研究表明,δ-Nrxn参与谷氨酸和甘氨酸介导的信号传导,而不是肽能信号传导。敲低上皮α-Nrxn揭示了其在外胚层和内胚层上皮细胞之间的细胞粘附中起主要作用。总的来说,这项研究为Nrxns的神经前功能提供了分子、功能和细胞方面的见解,以及理解它们如何以及为何被招募到突触机制中的关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfab/11294457/22dea189420c/41467_2024_50818_Fig1_HTML.jpg

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