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Engrailed 在成熟的血清素神经元中是必需的,以调节中缝背核的细胞结构和存活。

Engrailed is required in maturing serotonin neurons to regulate the cytoarchitecture and survival of the dorsal raphe nucleus.

机构信息

Department of Neurosciences, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Neurosci. 2012 Jun 6;32(23):7832-42. doi: 10.1523/JNEUROSCI.5829-11.2012.

Abstract

Analysis of constitutive Engrailed (En) null mice previously implicated the two En homeobox paralogs in the development of serotonin (5-HT) neurons. An unresolved question is whether En plays intrinsic roles in these neurons. Here, we show that En1 and En2 are expressed in maturing 5-HT neurons that will form the dorsal raphe nucleus (DRN) and part of the median raphe nucleus. Although En1 expression in 5-HT neurons persists postnatally, En2 expression is extinguished by embryonic day 17.5. To investigate intrinsic serotonergic functions for En1/2, we generated compound conditional En mutants with floxed alleles and a cre recombinase line that becomes active in postmitotic fetal 5-HT neurons. We present evidence in support of a requirement for En1/2 in the maturation of DRN cytoarchitecture. The disruption of DRN cytoarchitecture appears to result from a defect in secondary migration of serotonergic cell bodies toward the midline rather than disruption of their primary ventral migration away from the ventricular zone. Furthermore, En1/2 are required for perinatal maintenance of serotonergic identity and postnatal forebrain 5-HT levels. Increased numbers of caspase-3-expressing cells and loss of significant numbers of 5-HT neuron cell bodies, indicative of apoptosis, occurred after loss of serotonergic identity. Analysis of an allelic series of conditional mutants showed that En1 is the predominant functional En paralog in maturing 5-HT neurons, although a small contribution from En2 was reproducibly detected. Together, our findings reveal complex intrinsic functions for En in maturing 5-HT neurons, hence necessitating a reinterpretation of their roles in 5-HT system development.

摘要

先前的研究表明,组成型表达的 Engrailed(En)缺失小鼠的两个同源盒基因在 5-羟色胺(5-HT)神经元的发育中起作用。一个悬而未决的问题是 En 是否在这些神经元中发挥内在作用。在这里,我们显示 En1 和 En2 在成熟的 5-HT 神经元中表达,这些神经元将形成背侧中缝核(DRN)和部分中缝核。尽管 En1 在 5-HT 神经元中的表达在出生后持续存在,但 En2 的表达在胚胎第 17.5 天就被消除了。为了研究 En1/2 的内在 5-HT 能功能,我们生成了具有 floxed 等位基因和一种在产后 5-HT 神经元中具有活性的 cre 重组酶系的复合条件性 En 突变体。我们提供的证据支持 En1/2 对 DRN 细胞构筑的成熟有需求。DRN 细胞构筑的破坏似乎是由于 5-HT 体细胞向中线的二次迁移缺陷,而不是它们远离脑室区的初级腹侧迁移的破坏。此外,En1/2 对于产后维持 5-HT 能身份和产后前脑 5-HT 水平是必需的。在失去 5-HT 能身份后,出现了 caspase-3 表达细胞数量增加和大量 5-HT 神经元细胞体丢失,表明发生了细胞凋亡。对一系列条件性突变体的等位基因分析表明,在成熟的 5-HT 神经元中,En1 是主要的功能性 En 同源基因,尽管 En2 也有一定的贡献。总的来说,我们的研究结果揭示了 En 在成熟的 5-HT 神经元中具有复杂的内在功能,因此需要重新解释它们在 5-HT 系统发育中的作用。

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