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Functional analysis of the promoter of the mitochondrial phosphate carrier human gene: identification of activator and repressor elements and their transcription factors

机译:线粒体磷酸载体人类基因启动子的功能分析:激活和阻遏元件及其转录因子的鉴定

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摘要

The phosphate carrier (PiC) catalyses the import of phosphate into mitochondria where it is needed for ATP synthesis. We have analysed the 5′-flanking region of the human PiC gene and found that it has a single transcriptional initiation site and lacks a TATA box. Through deletion analysis of the −1213/−25 nt region, we identified an activation domain (−223/−25) and an inhibition domain (−1017/−814). The most effective promoter activity in transfected HeLa cells corresponded to the region containing putative binding sites for Sp1 (−163/−142; where Sp1 stands for stimulating protein-1) and CREB (−138/−116; where CREB stands for cAMP-response-element-binding protein). These DNA sequences were active in gel-shift assays in the presence of HeLa cell nuclear extracts or recombinant Sp1 and CREB respectively. Forskolin increased PiC promoter activity via the CREB site. Both footprinting and transfection of deletion constructs of the inhibition region (−1017/−814) showed that PiC silencer activity extends over 25 nt (−943/−919), which specifically binds two proteins present in HeLa cell nuclear extracts. These transcription factors were purified by DNA affinity, analysed by MS and identified as p54nrb/NonO (nuclear RNA binding protein) and PSF (protein-associated splicing factor). The PiC silencer region cloned in front of the ferritin promoter conferred a strong inhibition to the heterologous promoter. These findings may provide insight into control of PiC gene expression in different cell types and under different growth conditions. To our knowledge, this is the first study to analyse the regulation of the PiC gene expression in any cell.
机译:磷酸盐载体(PiC)催化将磷酸盐导入线粒体,这是ATP合成所需的。我们已经分析了人类PiC基因的5'侧翼区域,发现它具有单个转录起始位点,并且没有TATA框。通过对-1213 / -25 nt区域的缺失分析,我们确定了一个激活域(-223 / -25)和一个抑制域(-1017 / -814)。在转染的HeLa细胞中,最有效的启动子活性对应于含有推定的Sp1(-163 / -142; Sp1代表刺激蛋白1)和CREB(-138 / -116; CREB代表cAMP-响应元素结合蛋白)。这些DNA序列在HeLa细胞核提取物或重组Sp1和CREB的存在下的凝胶位移分析中均具有活性。 Forskolin通过CREB位点增加了PiC启动子活性。抑制区(−1017 / −814)的缺失构建体的印迹和转染均表明,PiC沉默子活性超过25nt(−943 / -919),其特异性结合HeLa细胞核提取物中存在的两种蛋白质。这些转录因子通过DNA亲和力纯化,经MS分析,鉴定为p54 nrb / NonO(核糖核酸结合蛋白)和PSF(蛋白相关剪接因子)。克隆在铁蛋白启动子前面的PiC沉默子区域对异源启动子产生了强烈的抑制作用。这些发现可能提供洞察在不同细胞类型中和在不同生长条件下对PiC基因表达的控制。据我们所知,这是第一个分析PiC基因在任何细胞中表达的调控的研究。

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