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神经内分泌谱系的发育需要bHLH-PAS转录因子SIM1。

Development of neuroendocrine lineages requires the bHLH-PAS transcription factor SIM1.

作者信息

Michaud J L, Rosenquist T, May N R, Fan C M

机构信息

Department of Embryology, Carnegie Institution of Washington, Baltimore, Maryland 21210 USA.

出版信息

Genes Dev. 1998 Oct 15;12(20):3264-75. doi: 10.1101/gad.12.20.3264.

Abstract

The bHLH-PAS transcription factor SIM1 is expressed during the development of the hypothalamic-pituitary axis in three hypothalamic nuclei: the paraventricular nucleus (PVN), the anterior periventricular nucleus (aPV), and the supraoptic nucleus (SON). To investigate Sim1 function in the hypothalamus, we produced mice carrying a null allele of Sim1 by gene targeting. Homozygous mutant mice die shortly after birth. Histological analysis shows that the PVN and the SON of these mice are hypocellular. At least five distinct types of secretory neurons, identified by the expression of oxytocin, vasopressin, thyrotropin-releasing hormone, corticotropin-releasing hormone, and somatostatin, are absent in the mutant PVN, aPV, and SON. Moreover, we show that SIM1 controls the development of these secretory neurons at the final stages of their differentiation. A subset of these neuronal lineages in the PVN/SON are also missing in mice bearing a mutation in the POU transcription factor BRN2. We provide evidence that, during development of the Sim1 mutant hypothalamus, the prospective PVN/SON region fails to express Brn2. Our results strongly indicate that SIM1 functions upstream to maintain Brn2 expression, which in turn directs the terminal differentiation of specific neuroendocrine lineages within the PVN/SON.

摘要

bHLH-PAS转录因子SIM1在下丘脑-垂体轴发育过程中,于三个下丘脑核团中表达:室旁核(PVN)、室周前核(aPV)和视上核(SON)。为了研究Sim1在下丘脑中的功能,我们通过基因打靶制备了携带Sim1无效等位基因的小鼠。纯合突变小鼠出生后不久即死亡。组织学分析表明,这些小鼠的PVN和SON细胞数量减少。突变体的PVN、aPV和SON中至少缺失了五种由催产素、血管加压素、促甲状腺激素释放激素、促肾上腺皮质激素释放激素和生长抑素表达所确定的不同类型的分泌神经元。此外,我们发现SIM1在这些分泌神经元分化的最后阶段控制其发育。在POU转录因子BRN2发生突变的小鼠中,PVN/SON中的一部分这些神经元谱系也缺失。我们提供的证据表明,在Sim1突变体下丘脑的发育过程中,预期的PVN/SON区域未能表达Brn2。我们的结果强烈表明,SIM1在维持Brn2表达的上游发挥作用,而Brn2表达反过来指导PVN/SON内特定神经内分泌谱系的终末分化。

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