Schredelseker Theresa, Veit Florian, Dorsky Richard I, Driever Wolfgang
Developmental Biology, Institute Biology 1, Faculty of Biology, Albert Ludwig University of Freiburg, Freiburg im Breisgau, Germany.
BIOSS Centre for Biological Signalling Studies, University of Freiburg, Freiburg im Breisgau, Germany.
Front Neurosci. 2020 Jun 3;14:525. doi: 10.3389/fnins.2020.00525. eCollection 2020.
The hypothalamus is characterized by great neuronal diversity, with many neuropeptides and other neuromodulators being expressed within its multiple anatomical domains. The regulatory networks directing hypothalamic development have been studied in detail, but, for many neuron types, control of differentiation is still not understood. The highly conserved Brain-specific homeobox (Bsx) transcription factor has previously been described in regulating and expression in the hypothalamic arcuate nucleus (ARC) in mice. While is expressed in many more subregions of both tuberal and mamillary hypothalamus, the functions therein are not known. Using genetic analyses in zebrafish, we show that most expression domains are dependent on Nkx2.1 and Nkx2.4 homeodomain transcription factors, while a subset depends on Otp. We show that the anatomical pattern of the ventral forebrain appears normal in mutants, but that Bsx is necessary for the expression of many neuropeptide encoding genes, including , , , , and , in distinct hypothalamic anatomical domains. We also found Bsx to be critical for normal expression of two Crh family members, and , as well as , in the hypothalamus and the telencephalic septal region. Furthermore, we demonstrate a crucial role for Bsx in serotonergic, histaminergic and nitrergic neuron development in the hypothalamus. We conclude that Bsx is critical for the terminal differentiation of multiple neuromodulatory cell types in the forebrain.
下丘脑的特点是神经元具有高度多样性,其多个解剖区域内表达多种神经肽和其他神经调质。虽然已经详细研究了指导下丘脑发育的调控网络,但对于许多神经元类型来说,其分化的控制机制仍不清楚。高度保守的脑特异性同源框(Bsx)转录因子此前已被描述为在调节小鼠下丘脑弓状核(ARC)中的[具体基因1]和[具体基因2]表达方面发挥作用。虽然[具体基因3]在结节部和乳头体下丘脑的更多亚区域中表达,但其在这些区域中的功能尚不清楚。通过对斑马鱼进行遗传分析,我们发现大多数[具体基因3]表达域依赖于Nkx2.1和Nkx2.4同源结构域转录因子,而一部分则依赖于Otp。我们发现,在[具体基因3]突变体中,腹侧前脑的解剖模式看起来正常,但Bsx对于下丘脑不同解剖区域中许多神经肽编码基因的表达是必需的,这些基因包括[具体基因4]、[具体基因5]、[具体基因6]、[具体基因7]和[具体基因8]。我们还发现Bsx对于下丘脑和端脑隔区中两个Crh家族成员[具体基因9]和[具体基因10]以及[具体基因11]的正常表达至关重要。此外,我们证明了Bsx在下丘脑5-羟色胺能、组胺能和一氧化氮能神经元发育中起关键作用。我们得出结论,Bsx对于前脑多种神经调节细胞类型的终末分化至关重要。