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Impaired dendritic growth and positioning of cortical pyramidal neurons by activation of aryl hydrocarbon receptor signaling in the developing mouse

机译:在发育中的小鼠中激活芳基烃受体信号传导损害树突状细胞的生长和皮质锥体神经元的定位

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摘要

The basic helix-loop-helix (bHLH) transcription factors exert multiple functions in mammalian cerebral cortex development. The aryl hydrocarbon receptor (AhR), a member of the bHLH-Per-Arnt-Sim subfamily, is a ligand-activated transcription factor reported to regulate nervous system development in both invertebrates and vertebrates, but the functions that AhR signaling pathway may have for mammalian cerebral cortex development remains elusive. Although the endogenous ligand involved in brain developmental process has not been identified, the environmental pollutant dioxin potently binds AhR and induces abnormalities in higher brain function of laboratory animals. Thus, we studied how activation of AhR signaling influences cortical development in mice. To this end, we produced mice expressing either constitutively active-AhR (CA-AhR), which has the capacity for ligand-independent activation of downstream genes, or AhR, which requires its ligands for activation. In brief, CA-AhR-expressing plasmid and AhR-expressing plasmid were each transfected into neural stems cells in the developing cerebrum by in utero electroporation on embryonic day 14.5. On postnatal day 14, mice transfected in utero with CA-AhR, but not those transfected with AhR, exhibited drastically reduced dendritic arborization of layer II/III pyramidal neurons and impaired neuronal positioning in the developing somatosensory cortex. The effects of CA-AhR were observed for dendrite development but not for the commissural fiber projection, suggesting a preferential influence on dendrites. The present results indicate that over-activation of AhR perturbs neuronal migration and morphological development in mammalian cortex, supporting previous observations of impaired dendritic structure, cortical dysgenesis, and behavioral abnormalities following perinatal dioxin exposure.
机译:基本的螺旋-环-螺旋(bHLH)转录因子在哺乳动物大脑皮层发育中发挥多种功能。芳烃受体(AhR)是bHLH-Per-Arnt-Sim亚家族的成员,是一种配体激活的转录因子,据报道可调节无脊椎动物和脊椎动物的神经系统发育,但AhR信号通路可能具有的功能哺乳动物大脑皮层的发育仍然难以捉摸。尽管尚未确定涉及大脑发育过程的内源性配体,但环境污染物二恶英有效结合了AhR,并诱发了实验动物大脑功能的异常。因此,我们研究了AhR信号的激活如何影响小鼠的皮质发育。为此,我们生产了表达具有组成性活性的AhR(CA-AhR)(具有能够不依赖配体激活下游基因的能力)或表达其配体(需要激活其配体)的小鼠。简而言之,在胚胎第14.5天通过子宫内电穿孔将表达CA-AhR的质粒和表达AhR的质粒各自转染到发育中的大脑的神经干细胞中。在出生后的第14天,用CA-AhR在子宫内转染的小鼠,但未用Ah-R转染的小鼠,表现出II / III层锥体神经元树突状树突化的急剧减少,并且在发育中的体感皮层中神经元的定位受损。观察到CA-AhR对枝晶生长的影响,但对合生纤维投影没有影响,表明对枝晶有优先影响。目前的结果表明,AhR的过度激活扰动了哺乳动物皮质的神经元迁移和形态发育,支持了围生期二恶英暴露后树突结构受损,皮层发育不全和行为异常的先前观察。

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