Ikeda Y, Swain A, Weber T J, Hentges K E, Zanaria E, Lalli E, Tamai K T, Sassone-Corsi P, Lovell-Badge R, Camerino G, Parker K L
Department of Pharmacology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Mol Endocrinol. 1996 Oct;10(10):1261-72. doi: 10.1210/mend.10.10.9121493.
Mutations of the orphan nuclear receptors, steroidogenic factor 1 (SF-1) and DAX-1, cause complex endocrine phenotypes that include impaired adrenal development and hypogonadotrophic hypogonadism. These similar phenotypes suggest that SF-1 and DAX-1 act in the same pathway(s) of endocrine development. To explore this model, we now compare directly their sites of expression. In mouse embryos, SF-1 expression in the urogenital ridge and brain either preceded or coincided with Dax-1 expression, with coordinate expression thereafter in the adrenal cortex, testis, ovary, hypothalamus, and anterior pituitary. The striking colocalization of SF-1 and Dax-1 supports the model that they are intimately linked in a common pathway of endocrine development. The slightly earlier onset of SF-1 expression and its ability to bind specifically to a conserved sequence in the Dax-1 5'-flanking region suggested that SF-1 may activate Dax-1 expression. However, promoter activity of Dax-1 5'-flanking sequences did not require this potential SF-1-responsive element, and Dax-1 expression was unimpaired in knockout mice lacking SF-1, establishing that SF-1 is not required for Dax-1 gene expression in these settings. Although the precise mechanisms remain to be established and may be multifactorial, our results strongly suggest that these two orphan nuclear receptors interact in a common pathway of endocrine development.
孤儿核受体类固醇生成因子1(SF-1)和DAX-1的突变会导致复杂的内分泌表型,包括肾上腺发育受损和低促性腺激素性性腺功能减退。这些相似的表型表明,SF-1和DAX-1在内分泌发育的同一途径中发挥作用。为了探究这一模型,我们现在直接比较它们的表达位点。在小鼠胚胎中,泌尿生殖嵴和大脑中的SF-1表达先于或与Dax-1表达同时出现,随后在肾上腺皮质、睾丸、卵巢、下丘脑和垂体前叶中协调表达。SF-1和Dax-1显著的共定位支持了它们在内分泌发育的共同途径中紧密相连的模型。SF-1表达稍早开始,且其能够特异性结合Dax-1 5'侧翼区域的保守序列,这表明SF-1可能激活Dax-1的表达。然而,Dax-1 5'侧翼序列的启动子活性并不需要这个潜在的SF-1反应元件,并且在缺乏SF-1的基因敲除小鼠中Dax-1表达并未受损,这表明在这些情况下Dax-1基因表达不需要SF-1。尽管确切机制仍有待确定且可能是多因素的,但我们的结果强烈表明这两种孤儿核受体在内分泌发育的共同途径中相互作用。