首页> 外文期刊>The anatomical record, Part A. Discoveries in molecular, cellular, and evolutionary biology >Expression of Cux-1 and Cux-2 in the developing somatosensory cortex of normal and barrel-defective mice
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Expression of Cux-1 and Cux-2 in the developing somatosensory cortex of normal and barrel-defective mice

机译:Cux-1和Cux-2在正常和桶形缺陷小鼠发育的体感皮层中的表达

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Recently, two orthologues of the Drosophila homeobox Cut gene, Cux-1 and Cux-2, have been identified as restricted molecular markers of upper layer (II-IV) neurons in the murine cerebral cortex. We show that during early postnatal life, from P0 to P10, Cux-1 and Cux-2 mRNA are coexpressed in all primary sensory cortices. Antisera to Cux-1 and Cux-2 immunoreactivities preferentially label neurons in the barrel walls of the primary somatosensory cortex (S1). Subsequently, Cux-1 remains enriched in sensory cortices, whereas Cux-2 expression enlarges to comprise the frontal and insular areas. The laminar distribution of Cux-1 and Cux-2 differs: Cux-1 follows a layer IV to layer II decreasing gradient of expression, whereas Cux-2 expression is homogeneous across layers IV-II. No colocalization was found with GABA and birth dating experiments showed that Cux-1-positive neurons in layer IV are born during a restricted period, E13.5-E14.5, suggesting that Cux-1 is a useful molecular marker of the glutamatergic neurons of layer IV. We examined Cux-1 and Cux-2 in barrel-defective mouse strains, the VMAT2 KO, the MAOA KO, and the Adcyl 1(brl) strain. A normal expression level of Cux-1 and Cux-2 was found in layer IV, despite the lack of segregation of the neurons as barrels. Conversely, in Reeler mice, Cux-1 and Cux-2 had a distinct laminar distribution: the Cux-1-positive neurons had an inverted deep localization, whereas the Cux-2-positive neurons were distributed throughout the cortical thickness, suggesting that Cux-2 expression is more widely expressed in the inverted cortex of reeler mutants. Our results indicate that Cux-1 is a useful marker of the layer IV neurons in S1, and that Cux-1 and Cux-2 are differently regulated in the upper layers of the cerebral cortex. (c) 2006 Wiley-Liss, Inc.
机译:最近,果蝇同源盒切基因的两个直系同源物Cux-1和Cux-2被鉴定为鼠脑皮质上层(II-IV)神经元的限制性分子标记。我们表明,在出生后早期,从P0到P10,Cux-1和Cux-2 mRNA在所有主要的感觉皮层中共表达。对Cux-1和Cux-2免疫反应性的抗血清优先标记初级体感皮层(S1)桶壁中的神经元。随后,Cux-1仍然富含感觉皮质,而Cux-2的表达扩大到包括额叶和岛状区域。 Cux-1和Cux-2的层流分布不同:Cux-1沿着第IV层到第II层,降低了表达梯度,而Cux-2的表达在第IV-II层中是均匀的。用GABA未发现共定位现象,并且出生约会实验表明第IV层中Cux-1阳性神经元在限定的时间E13.5-E14.5内出生,这表明Cux-1是谷氨酸能神经元的有用分子标记。第四层。我们检查了桶缺陷型小鼠品系,VMAT2 KO,MAOA KO和Adcyl 1(brl)品系中的Cux-1和Cux-2。尽管没有像桶那样的神经元分离,在第IV层中发现了Cux-1和Cux-2的正常表达水平。相反,在Reeler小鼠中,Cux-1和Cux-2具有明显的层流分布:Cux-1阳性神经元的倒置深定位,而Cux-2阳性神经元遍布整个皮层厚度,表明Cux -2表达在reeler突变体的反向皮层中更广泛​​地表达。我们的结果表明,Cux-1是S1中IV层神经元的有用标记,而Cux-1和Cux-2在大脑皮层的上层受到不同的调节。 (c)2006年Wiley-Liss,Inc.

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