Karpova Tatiana, Presley Jeremy, Manimaran Rengasamy R, Scherrer Serge P, Tejada Lovella, Peterson Kenneth R, Heckert Leslie L
Department of Molecular and Integrative Physiology, The University of Kansas Medical Center, 3901 Rainbow Boulevard. Kansas City, Kansas 66160, USA.
Mol Endocrinol. 2005 Oct;19(10):2549-63. doi: 10.1210/me.2004-0386. Epub 2005 Jun 16.
Steroidogenic factor 1 (SF-1/Nr5a1) is an orphan nuclear receptor encoded by the Ftz-F1 gene and is required for gonad and adrenal development and regulation of hormone production within the reproductive and adrenal axes. To extend our understanding of Ftz-F1 and its role in SF-1 expression, we identified and characterized a yeast artificial chromosome (YAC) containing Ftz-F1. Within this YAC, Ftz-F1 is centrally located and flanked by genes encoding a second orphan nuclear receptor, germ cell nuclear factor, and proteasome (prosome, macropain) subunit beta type 7. Three lines of transgenic mice carrying the YAC were generated and in two lines (lines 7 and 14), RT-PCR and ribonuclease protection analysis showed that expression of transgenic SF-1 mimicked that of endogenous SF-1, both spatially and quantitatively. In the third line (line 15), pituitary and hypothalamic expression were absent. Comparison of the integrated transgenes revealed that line 15 was truncated at the end of intron 4 and revealed a region within the locus that is responsible for SF-1 expression in the pituitary and hypothalamus. The line 14 transgene was introduced into a mouse strain lacking functional SF-1. Examination of SF-1-deficient, transgene-positive mice revealed that the YAC was able to rescue adrenal and gonad development, which normally arrests in the SF-1-null embryos and showed that the 153-kb transgene integrated in line 14 is sufficient to properly direct SF-1 expression and support its biological activity. Thus, the study defines a region of Ftz-F1 that contains the requisite set of regulatory elements to direct SF-1 cell-specific expression and all temporal and quantitative changes need for its biological activity.
类固醇生成因子1(SF-1/Nr5a1)是一种由Ftz-F1基因编码的孤儿核受体,对于性腺和肾上腺的发育以及生殖和肾上腺轴内激素产生的调节至关重要。为了扩展我们对Ftz-F1及其在SF-1表达中作用的理解,我们鉴定并表征了一个包含Ftz-F1的酵母人工染色体(YAC)。在这个YAC中,Ftz-F1位于中心位置,两侧分别是编码另一种孤儿核受体——生殖细胞核因子的基因和蛋白酶体(蛋白酶体,大痛蛋白)亚基β7型。我们构建了携带该YAC的三系转基因小鼠,在其中两系(7系和14系)中,逆转录聚合酶链反应(RT-PCR)和核糖核酸酶保护分析表明,转基因SF-1的表达在空间和数量上都模拟了内源性SF-1的表达。在第三系(15系)中,垂体和下丘脑没有表达。对整合的转基因进行比较发现,15系在第4内含子末端被截断,揭示了该基因座内一个负责垂体和下丘脑SF-1表达的区域。将14系转基因导入缺乏功能性SF-1的小鼠品系。对缺乏SF-1但转基因阳性的小鼠进行检查发现,该YAC能够挽救肾上腺和性腺的发育,而在SF-1基因缺失的胚胎中,肾上腺和性腺发育通常会停滞,这表明整合在14系中的153 kb转基因足以正确指导SF-1的表达并支持其生物学活性。因此,该研究确定了Ftz-F1的一个区域,该区域包含指导SF-1细胞特异性表达以及其生物学活性所需的所有时间和数量变化的必要调控元件集。