Department of Biochemistry and Molecular Biology, College of Medicine, Hanyang University, Seoul 133-791, Korea.
Development. 2014 Feb;141(4):761-72. doi: 10.1242/dev.095802.
Understanding how dopamine (DA) phenotypes are acquired in midbrain DA (mDA) neuron development is important for bioassays and cell replacement therapy for mDA neuron-associated disorders. Here, we demonstrate a feed-forward mechanism of mDA neuron development involving Nurr1 and Foxa2. Nurr1 acts as a transcription factor for DA phenotype gene expression. However, Nurr1-mediated DA gene expression was inactivated by forming a protein complex with CoREST, and then recruiting histone deacetylase 1 (Hdac1), an enzyme catalyzing histone deacetylation, to DA gene promoters. Co-expression of Nurr1 and Foxa2 was established in mDA neuron precursor cells by a positive cross-regulatory loop. In the presence of Foxa2, the Nurr1-CoREST interaction was diminished (by competitive formation of the Nurr1-Foxa2 activator complex), and CoREST-Hdac1 proteins were less enriched in DA gene promoters. Consequently, histone 3 acetylation (H3Ac), which is responsible for open chromatin structures, was strikingly increased at DA phenotype gene promoters. These data establish the interplay of Nurr1 and Foxa2 as the crucial determinant for DA phenotype acquisition during mDA neuron development.
了解中脑多巴胺(mDA)神经元发育中多巴胺(DA)表型是如何获得的,对于 mDA 神经元相关疾病的生物测定和细胞替代治疗很重要。在这里,我们证明了涉及 Nurr1 和 Foxa2 的 mDA 神经元发育的前馈机制。Nurr1 作为 DA 表型基因表达的转录因子发挥作用。然而,Nurr1 介导的 DA 基因表达被与 CoREST 形成蛋白质复合物而失活,然后招募组蛋白去乙酰化酶 1(Hdac1),一种催化组蛋白去乙酰化的酶,到 DA 基因启动子。Nurr1 和 Foxa2 通过正交叉调节环在 mDA 神经元前体细胞中共同表达。在 Foxa2 的存在下,Nurr1-CoREST 相互作用减弱(通过形成竞争的 Nurr1-Foxa2 激活复合物),并且 CoREST-Hdac1 蛋白在 DA 基因启动子上的富集减少。因此,负责开放染色质结构的组蛋白 3 乙酰化(H3Ac)在 DA 表型基因启动子上显著增加。这些数据确立了 Nurr1 和 Foxa2 的相互作用是 mDA 神经元发育过程中获得 DA 表型的关键决定因素。