Taketani Y, Miyamoto K i, Tanaka K, Katai K, Chikamori M, Tatsumi S, Segawa H, Yamamoto H, Morita K, Takeda E
Department of Clinical Nutrition, School of Medicine, University of Tokushima, Kuramoto-cho 3, Tokushima 770, Japan.
Biochem J. 1997 Jun 15;324 ( Pt 3)(Pt 3):927-34. doi: 10.1042/bj3240927.
Three lambda phage clones encompassing the Na+/phosphate co-transporter (NaPi-3) gene and its 5' flanking region were isolated from a human genomic DNA library. The gene comprises 13 exons and 12 introns and spans approx. 14 kb. All exon-intron junctions conform to the GT/AG rule. The major transcription-initiation site was determined by primer-extension analysis and is an adenosine residue 57 bp upstream of the 3' end of the first exon. There is a typical TATA box 28 bp upstream of the major transcription-initiation site and various cis-acting elements, including a cAMP-responsive element, AP-1, AP-2 and SP-1 sites in the 5' flanking region. This region also contains three direct-repeat-like sequences that resemble the consensus binding sequence for members of the steroid-thyroid hormone receptor superfamily, including vitamin D. Deletion analysis suggests that the region from nt-2409 to nt-1259 in the 5' flanking region may be involved in kidney-specific gene expression. Vitamin D responsiveness of the NaPi-3 promoter was also detected in COS-7 cells co-transfected with a human vitamin D receptor expression vector. The presence of the three vitamin D receptor- responsive elements in the NaPi-3 promoter may be important in mediating the enhanced expression of the gene by 1,25-dihydroxyvitamin D3.
从人基因组DNA文库中分离出三个包含钠离子/磷酸盐共转运体(NaPi - 3)基因及其5'侧翼区域的λ噬菌体克隆。该基因由13个外显子和12个内含子组成,跨度约为14 kb。所有外显子 - 内含子边界均符合GT/AG规则。主要转录起始位点通过引物延伸分析确定,位于第一个外显子3'端上游57 bp处的一个腺苷残基。在主要转录起始位点上游28 bp处有一个典型的TATA盒,在5'侧翼区域还有各种顺式作用元件,包括一个cAMP反应元件、AP - 1、AP - 2和SP - 1位点。该区域还包含三个类似直接重复的序列,类似于类固醇 - 甲状腺激素受体超家族成员(包括维生素D)的共有结合序列。缺失分析表明,5'侧翼区域中从nt - 2409到nt - 1259的区域可能参与肾脏特异性基因表达。在与人维生素D受体表达载体共转染的COS - 7细胞中也检测到了NaPi - 3启动子的维生素D反应性。NaPi - 3启动子中三个维生素D受体反应元件的存在可能在介导1,25 - 二羟基维生素D3增强该基因的表达中起重要作用。