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转录因子Nfib的缺失会延迟脑桥基底部及其他苔藓纤维核的形成。

Absence of the transcription factor Nfib delays the formation of the basilar pontine and other mossy fiber nuclei.

作者信息

Kumbasar Asli, Plachez Céline, Gronostajski Richard M, Richards Linda J, Litwack E David

机构信息

Department of Anatomy and Neurobiology and Program in Neuroscience, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.

出版信息

J Comp Neurol. 2009 Mar 1;513(1):98-112. doi: 10.1002/cne.21943.

Abstract

Transcription factors of the Nuclear Factor I (Nfi) family are important for the development of specific neuronal and glial populations in the nervous system. One such population, the neurons of the basilar pontine nuclei, expresses high levels of Nfi proteins, and the pontine nuclei are greatly reduced in mice lacking a functional Nfib gene. Pontine neurons, along with other precerebellar neurons that populate the hindbrain, arise from precursors in the lower rhombic lip and migrate anteroventrally to reach their final location. Using immunohistochemistry, we find that NFI-B expression is specific for mossy fiber populations of the precerebellar system. Analysis of the Nfib(-/-) hindbrain indicates that the development of the basilar pontine nuclei is delayed, with pontine neurons migrating 1-2 days later than in control animals, and that significantly fewer pontine neurons are produced. While the mossy fiber nuclei of the caudal medulla do form, they also exhibit a developmental delay. Nfia and Nfix null mice exhibit no apparent pontine phenotype, implying specificity in the action of NFI family members. Collectively, these data demonstrate that Nfib plays an important role in the generation of precerebellar mossy fiber neurons, and may do so at least in part by regulating neurogenesis.

摘要

核因子I(Nfi)家族的转录因子对神经系统中特定神经元和神经胶质细胞群的发育至关重要。其中一个细胞群,即脑桥基底核的神经元,表达高水平的Nfi蛋白,并且在缺乏功能性Nfib基因的小鼠中脑桥核大大减少。脑桥神经元与填充后脑的其他小脑前神经元一起,起源于下菱形唇的前体,并向前腹侧迁移以到达其最终位置。通过免疫组织化学,我们发现NFI-B表达对小脑前系统的苔藓纤维细胞群具有特异性。对Nfib(-/-)后脑的分析表明,脑桥基底核的发育延迟,脑桥神经元的迁移比对照动物晚1-2天,并且产生的脑桥神经元明显减少。虽然延髓尾部的苔藓纤维核确实形成,但它们也表现出发育延迟。Nfia和Nfix基因敲除小鼠没有明显的脑桥表型,这意味着NFI家族成员的作用具有特异性。总的来说,这些数据表明Nfib在小脑前苔藓纤维神经元的产生中起重要作用,并且可能至少部分地通过调节神经发生来实现。

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