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Fez1在成年小鼠新皮层中呈层特异性表达。

Fez1 is layer-specifically expressed in the adult mouse neocortex.

作者信息

Inoue Kiyoshi, Terashima Toshio, Nishikawa Toru, Takumi Toru

机构信息

Osaka Bioscience Institute, Suita, Osaka 565-0874, Japan.

出版信息

Eur J Neurosci. 2004 Dec;20(11):2909-16. doi: 10.1111/j.1460-9568.2004.03763.x.

Abstract

The mammalian cerebral neocortex occupies the largest area of the cerebral cortex and is cytoarchitectually composed of six layers (I-VI). Recent molecular analysis has begun to reveal the existence of various developmental programs, including the genetic regulation of arealization of the neocortex. Although an increasing number of molecular determinants of the developmental stages of the neocortex have been identified, no genes specifically expressed in the adult neocortex have been identified to date. By global screening using microarrays, combined with systematic in situ hybridization, we identified a zinc-finger type transcription factor, Fez1, which is expressed predominantly in the mouse adult neocortex. No other genes in the neocortex have been shown to date to have their expression with such high specificity. Using two-color in situ hybridization, we show that Fez1 is mainly expressed in cortical layers V and VI, not in gamma-aminobutyric acid neurons but in pyramidal neurons, the projection neurons of the cerebral cortex. Immunohistochemistry also shows that Fez1 is expressed in deep layers of the neocortex. Fez1 will be invaluable not only for the molecular understanding of corticogenesis but also for understanding the physiological functions of the adult neocortex, as well as for the use of its promoter in gene-manipulated animals and in conditional expression systems.

摘要

哺乳动物的大脑新皮层占据大脑皮层的最大面积,在细胞结构上由六层(I - VI层)组成。最近的分子分析已开始揭示各种发育程序的存在,包括新皮层区域化的遗传调控。尽管已鉴定出越来越多新皮层发育阶段的分子决定因素,但迄今为止尚未鉴定出在成年新皮层中特异性表达的基因。通过使用微阵列进行全局筛选,并结合系统的原位杂交,我们鉴定出一种锌指型转录因子Fez1,它主要在成年小鼠新皮层中表达。迄今为止,新皮层中尚未有其他基因被证明具有如此高的特异性表达。使用双色原位杂交,我们发现Fez1主要在皮层V层和VI层表达,不在γ-氨基丁酸神经元中表达,而是在锥体神经元中表达,锥体神经元是大脑皮层的投射神经元。免疫组织化学也表明Fez1在新皮层的深层表达。Fez1不仅对于从分子层面理解皮层发生过程具有重要价值,而且对于理解成年新皮层的生理功能、以及在基因操作动物和条件表达系统中使用其启动子都具有重要价值。

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