CEINGE Biotecnologie Avanzate, and SEMM European School of Molecular Medicine, Via Comunale Margherita 482, 80145, Naples, Italy.
Mol Neurobiol. 2011 Apr;43(2):107-13. doi: 10.1007/s12035-010-8148-y. Epub 2010 Nov 18.
Mesencephalic and diencephalic dopaminergic (mdDA) progenitors generate two major groups of neurons corresponding to the A9 neurons of the substantia nigra pars compacta (SNpc) and the A10 neurons of the ventral tegmental area (VTA). MdDA neurons control motor, sensorimotor and motivated behaviour and their degeneration or abnormal functioning is associated to Parkinson's disease and psychiatric disorders. Although relevant advances have been made, the molecular basis controlling identity, survival and vulnerability to neurodegeneration of SNpc and VTA neurons remains poorly understood. Here, we will review recent findings on the role exerted by the transcription factor Otx2 in adult mdDA neurons. Otx2 expression is restricted to a relevant fraction of VTA neurons and absent in the SNpc. In particular, Otx2 is prevalently excluded from neurons of the dorsal-lateral VTA, which expressed Girk2 and high level of the dopamine transporter (Dat). Loss and gain of function mouse models revealed that Otx2 controls neuron subtype identity by antagonizing molecular and functional features of the dorsal-lateral VTA such as Girk2 and Dat expression as well as vulnerability to the parkinsonian MPTP toxin. Furthermore, when ectopically expressed in the SNpc, Otx2 suppresses Dat expression and confers efficient neuroprotection to MPTP toxicity by suppressing efficient DA uptake.
中脑和端脑多巴胺能(mdDA)祖细胞产生两个主要的神经元群,分别对应于黑质致密部(SNpc)的 A9 神经元和腹侧被盖区(VTA)的 A10 神经元。mdDA 神经元控制运动、感觉运动和动机行为,其退化或异常功能与帕金森病和精神障碍有关。尽管已经取得了相关进展,但控制 SNpc 和 VTA 神经元的身份、存活和易患神经退行性变的分子基础仍知之甚少。在这里,我们将回顾转录因子 Otx2 在成年 mdDA 神经元中作用的最新发现。Otx2 的表达局限于 VTA 神经元的一个相关部分,而在 SNpc 中则不存在。特别是,Otx2 主要被排除在 VTA 的背外侧神经元之外,这些神经元表达 Girk2 和高多巴胺转运体(Dat)水平。失活和功能获得的小鼠模型表明,Otx2 通过拮抗背外侧 VTA 的分子和功能特征,如 Girk2 和 Dat 表达以及对帕金森氏病 MPTP 毒素的易感性,来控制神经元亚型的身份。此外,当异位表达于 SNpc 时,Otx2 抑制 Dat 表达,并通过抑制有效的 DA 摄取来提供对 MPTP 毒性的有效神经保护。