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The homeodomain transcription factor Pitx3 facilitates differentiation of mouse embryonic stem cells into AHD2-expressing dopaminergic neurons

机译:同源域转录因子Pitx3促进小鼠胚胎干细胞分化为表达AHD2的多巴胺能神经元

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The A9 dopaminergic (DA) neuronal group projecting to the dorsal striatum is the most vulnerable in Parkinson's disease (PD). We genetically engineered mouse embryonic stem (ES) cells to express the transcription factors Nurr1 or Pitx3. After in vitro differentiation of Pitx3-expressing ES cells, the proportion of DA neurons expressing aldehyde dehydrogenase 2 (AHD2) increased, while the total number of DA neurons remained the same. The highest levels of AHD2 expression were observed in mouse A9 DA neurons projecting to the dorsal striatum. Furthermore, real-time PCR analyses of in vitro differentiated Pitx3-expressing ES cells revealed that genes highly expressed in A9 DA neurons were up-regulated. When transplanted into the mouse striatum, Pitx3-expressing cells generated an increased proportion of AHD2-expressing DA neurons. Contrastingly, in Nurr1-expressing ES cells, increases of all midbrain DA markers were observed, resulting in a higher total number of DA neurons in vitro and in vivo, whereas the proportion of AHD2-expressing DA neurons was not changed. Our data, using gain-of-function analysis of ES cells, suggest that Pitx3 may be important for specification and/or maintenance of A9-like neuronal properties, while Nurr1 influences overall midbrain DA specification. These findings may be important for modifying ES cells to generate an optimal cell source for transplantation therapy of PD.
机译:投射到背侧纹状体的A9多巴胺能(DA)神经元组在帕金森氏病(PD)中最脆弱。我们对小鼠胚胎干(ES)细胞进行了基因工程改造,以表达转录因子Nurr1或Pitx3。在体外表达Pitx3的ES细胞分化后,表达醛脱氢酶2(AHD2)的DA神经元的比例增加,而DA神经元的总数保持不变。在投射到背侧纹状体的小鼠A9 DA神经元中观察到最高水平的AHD2表达。此外,对体外分化的表达Pitx3的ES细胞进行实时PCR分析显示,在A9 DA神经元中高度表达的基因被上调。当移植到小鼠纹状体中时,表达Pitx3的细胞产生增加比例的表达AHD2的DA神经元。相反,在表达Nurr1的ES细胞中,观察到所有中脑DA标记物的增加,导致体外和体内DA神经元的总数更高,而表达AHD2的DA神经元的比例没有改变。我们的数据使用ES细胞的功能获得性分析表明,Pitx3对于规范和/或维持A9样神经元特性可能很重要,而Nurr1影响整体中脑DA规范。这些发现对于修饰ES细胞以产生用于PD的移植治疗的最佳细胞来源可能是重要的。

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