Satb2 regulates the development of dopaminergic neurons in the arcuate nucleus by Dlx1

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作者
Qiong Zhang
Lei Zhang
Ying Huang
Pengcheng Ma
Bingyu Mao
Yu-Qiang Ding
Ning-Ning Song
机构
[1] Fudan University,Department of Laboratory Animal Science
[2] Tongji University School of Medicine,Key Laboratory of Arrhythmias, Ministry of Education of China, East Hospital, and Department of Anatomy and Neurobiology
[3] Fudan University,State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science
[4] Fudan University,Department of Anatomy, Histology and Embryology, School of Basic Medical Sciences
[5] State Key Laboratory of Genetic Resources and Evolution,undefined
[6] Kunming Institute of Zoology,undefined
[7] Chinese Academy of Sciences,undefined
[8] Center for Excellence in Animal Evolution and Genetics,undefined
[9] Chinese Academy of Sciences,undefined
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摘要
Dopaminergic (DA) neurons in the arcuate nucleus (ARC) of the hypothalamus play essential roles in the secretion of prolactin and the regulation of energy homeostasis. However, the gene regulatory network responsible for the development of the DA neurons remains poorly understood. Here we report that the transcription factor special AT-rich binding protein 2 (Satb2) is required for the development of ARC DA neurons. Satb2 is expressed in a large proportion of DA neurons without colocalization with proopiomelanocortin (POMC), orexigenic agouti-related peptide (AgRP), neuropeptide-Y (NPY), somatostatin (Sst), growth hormone-releasing hormone (GHRH), or galanin in the ARC. Nestin-Cre;Satb2flox/flox (Satb2 CKO) mice show a reduced number of ARC DA neurons with unchanged numbers of the other types of ARC neurons, and exhibit an increase of serum prolactin level and an elevated metabolic rate. The reduction of ARC DA neurons in the CKO mice is observed at an embryonic stage and Dlx1 is identified as a potential downstream gene of Satb2 in regulating the development of ARC DA neurons. Together, our study demonstrates that Satb2 plays a critical role in the gene regulatory network directing the development of DA neurons in ARC.
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