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Nr4a1-eGFP Is a Marker of Striosome-Matrix Architecture, Development and Activity in the Extended Striatum

机译:Nr4a1-eGFP是扩展纹状体中脂质体基质结构,发育和活性的标志

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摘要

Transgenic mice expressing eGFP under population specific promoters are widely used in neuroscience to identify specific subsets of neurons in situ and as sensors of neuronal activity in vivo. Mice expressing eGFP from a bacterial artificial chromosome under the Nr4a1 promoter have high expression within the basal ganglia, particularly within the striosome compartments and striatal-like regions of the extended amygdala (bed nucleus of the stria terminalis, striatal fundus, central amygdaloid nucleus and intercalated cells). Grossly, eGFP expression is inverse to the matrix marker calbindin 28K and overlaps with mu-opioid receptor immunoreactivity in the striatum. This pattern of expression is similar to Drd1, but not Drd2, dopamine receptor driven eGFP expression in structures targeted by medium spiny neuron afferents. Striosomal expression is strong developmentally where Nr4a1-eGFP expression overlaps with Drd1, TrkB, tyrosine hydroxylase and phospho-ERK, but not phospho-CREB, immunoreactivity in “dopamine islands”. Exposure of adolescent mice to methylphenidate resulted in an increase in eGFP in both compartments in the dorsolateral striatum but eGFP expression remained brighter in the striosomes. To address the role of activity in Nr4a1-eGFP expression, primary striatal cultures were prepared from neonatal mice and treated with forskolin, BDNF, SKF-83822 or high extracellular potassium and eGFP was measured fluorometrically in lysates. eGFP was induced in both neurons and contaminating glia in response to forskolin but SKF-83822, brain derived neurotrophic factor and depolarization increased eGFP in neuronal-like cells selectively. High levels of eGFP were primarily associated with Drd1+ neurons in vitro detected by immunofluorescence; however ∼15% of the brightly expressing cells contained punctate met-enkephalin immunoreactivity. The Nr4a1-GFP mouse strain will be a useful model for examining the connectivity, physiology, activity and development of the striosome system.
机译:在种群特异性启动子下表达eGFP的转基因小鼠被广泛用于神经科学领域,以原位鉴定神经元的特定子集,并作为体内神经元活性的传感器。在Nr4a1启动子下从细菌人工染色体表达eGFP的小鼠在基底神经节内高表达,尤其是在杏仁核的纹状体区室和纹状体区域内(纹状体末端的床核,纹状体眼底,中央杏仁状核和插层)高表达。细胞)。总的来说,eGFP的表达与基质标志物calbindin 28K相反,并与纹状体中的μ阿片受体免疫反应重叠。这种表达方式与Drd1类似,但与Drd2不同,多巴胺受体驱动的eGFP在中棘状神经元传入介质靶向的结构中表达。在“多巴胺岛”中,Nr4a1-eGFP的表达与Drd1,TrkB,酪氨酸羟化酶和磷酸化的ERK重叠但在磷酸化的CREB上却没有重叠,因此,纹状体的表达在发育上很强。青春期小鼠暴露于哌醋甲酯导致背外侧纹状体的两个区室中的eGFP均增加,但在基质体中eGFP的表达仍然较亮。为了解决活性在Nr4a1-eGFP表达中的作用,从新生小鼠制备了原始纹状体培养物,并用福司可林,BDNF,SKF-83822或高细胞外钾处理,并在裂解物中用荧光法测量了eGFP。响应福斯高林,在神经元和污染胶质细胞中均诱导产生eGFP,但SKF-83822,脑源性神经营养因子和去极化作用选择性地增加了神经元样细胞中的eGFP。高水平的eGFP主要与免疫荧光检测到的Drd1 +神经元有关。然而,约有15%的明亮细胞含有点状甲脑啡肽免疫反应性。 Nr4a1-GFP小鼠品系将是检查核糖体系统的连通性,生理学,活性和发育的有用模型。

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