【2h】

Tcf4

机译:TCF4

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摘要

During development, mesodiencephalic dopaminergic (mdDA) neurons form into different molecular subsets. Knowledge of which factors contribute to the specification of these subsets is currently insufficient. In this study, we examined the role of Tcf4, a member of the E-box protein family, in mdDA neuronal development and subset specification. We show that Tcf4 is expressed throughout development, but is no longer detected in adult midbrain. Deletion of Tcf4 results in an initial increase in TH-expressing neurons at E11.5, but this normalizes at later embryonic stages. However, the caudal subset marker Nxph3 and rostral subset marker Ahd2 are affected at E14.5, indicating that Tcf4 is involved in correct differentiation of mdDA neuronal subsets. At P0, expression of these markers partially recovers, whereas expression of Th transcript and TH protein appears to be affected in lateral parts of the mdDA neuronal population. The initial increase in TH-expressing cells and delay in subset specification could be due to the increase in expression of the bHLH factor Ascl1, known for its role in mdDA neuronal differentiation, upon loss of Tcf4. Taken together, our data identified a minor role for Tcf4 in mdDA neuronal development and subset specification.
机译:在开发期间,MesodioteAntiCealic多巴胺能(MDDA)神经元形成不同的分子亚群。了解哪些因素对这些子集的规范有贡献,目前是不够的。在这项研究中,我们研究了TCF4,E-Box蛋白家族的成员,在MDDA神经元发展和子集规范中的作用。我们表明TCF4在整个开发过程中表达,但在成人中脑中不再检测到。 TCF4的缺失导致E11.5在E11.5的初始增加,但这种在后续胚胎阶段正常化。然而,尾部子集标记Nxph3和rostral子集标记AHD2受到e14.5的影响,表明TCF4涉及MDDA神经元子集的正确分化。在P0,这些标志物的表达部分恢复,而TH转录物和TH蛋白的表达似乎受MDDA神经元群的侧部受影响。表达细胞的初始增加和子集规范的延迟可能是由于BHLH因子ASCl1表达的增加,以其在MDDA神经元分化中的作用中,在TCF4的损失时。我们的数据集中在一起,确定了TCF4在MDDA神经元发展和子集规范中的次要作用。

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