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脚间核中多个区域化基因及其假定网络提示神经元发育和轴突导向的复杂机制。

Multiple Regionalized Genes and Their Putative Networks in the Interpeduncular Nucleus Suggest Complex Mechanisms of Neuron Development and Axon Guidance.

作者信息

García-Guillén Isabel M, Alonso Antonia, Puelles Luis, Marín Faustino, Aroca Pilar

机构信息

Department of Human Anatomy and Psychobiology, Faculty of Medicine, Regional Campus of International Excellence "Campus Mare Nostrum", University of Murcia and IMIB-Arrixaca, Murcia, Spain.

出版信息

Front Neuroanat. 2021 Feb 16;15:643320. doi: 10.3389/fnana.2021.643320. eCollection 2021.

Abstract

The interpeduncular nucleus (IPN) is a highly conserved limbic structure in the vertebrate brain, located in the isthmus and rhombomere 1. It is formed by various populations that migrate from different sites to the distinct domains within the IPN: the prodromal, rostral interpeduncular, and caudal interpeduncular nuclei. The aim here was to identify genes that are differentially expressed across these domains, characterizing their putative functional roles and interactions. To this end, we screened the 2,038 genes in the Allen Developing Mouse Brain Atlas database expressed at E18.5 and we identified 135 genes expressed within the IPN. The functional analysis of these genes highlighted an overrepresentation of gene families related to neuron development, cell morphogenesis and axon guidance. The interactome analysis within each IPN domain yielded specific networks that mainly involve members of the ephrin/Eph and Cadherin families, transcription factors and molecules related to synaptic neurotransmission. These results bring to light specific mechanisms that might participate in the formation, molecular regionalization, axon guidance and connectivity of the different IPN domains. This genoarchitectonic model of the IPN enables data on gene expression and interactions to be integrated and interpreted, providing a basis for the further study of the connectivity and function of this poorly understood nuclear complex under both normal and pathological conditions.

摘要

脚间核(IPN)是脊椎动物大脑中高度保守的边缘结构,位于峡部和菱脑节1。它由从不同部位迁移到IPN内不同区域的各种细胞群组成:前驱性、嘴侧脚间核和尾侧脚间核。本文的目的是鉴定在这些区域差异表达的基因,表征其假定的功能作用和相互作用。为此,我们筛选了艾伦发育小鼠脑图谱数据库中在E18.5表达的2038个基因,并鉴定出135个在IPN内表达的基因。对这些基因的功能分析突出显示了与神经元发育、细胞形态发生和轴突导向相关的基因家族的过度表达。每个IPN区域内的相互作用组分析产生了特定的网络,主要涉及ephrin/Eph和钙黏着蛋白家族的成员、转录因子以及与突触神经传递相关的分子。这些结果揭示了可能参与不同IPN区域形成、分子区域化、轴突导向和连接的特定机制。这种IPN的基因结构模型能够整合和解释基因表达及相互作用的数据,为在正常和病理条件下进一步研究这个了解甚少的核复合体的连接性和功能提供了基础。

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