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大鼠血管升压素V2受体基因启动子的反向PCR介导克隆

Inverse PCR-mediated cloning of the promoter for the rat vasopressin V2 receptor gene.

作者信息

Mandon B, Bellanger A C, Elalouf J M

机构信息

Département de Biologie Cellulaire et Moléculaire, CEA Saclay, Gif-sur-Yvette, France.

出版信息

Pflugers Arch. 1995 May;430(1):12-8. doi: 10.1007/BF00373834.

Abstract

The adenylyl cyclase-coupled vasopressin V2 receptor has been cloned recently and shown, in rats, to be produced from the predominant form of two alternate spliced variants. To begin to unravel the transcriptional regulation of this receptor, we have isolated the 5' flanking region of the rat vasopressin V2 receptor gene and characterized its promoter sequence. The method of inverse polymerase chain reaction (PCR), which allows the amplification of DNA fragments adjacent to a segment of known sequence, was used as an alternative approach to genomic DNA library screening. Using a probe encompassing part of the coding region, first we identified by Southern blot analysis, a single BstX I hybridizing fragment of 2.3 kilobases (kb). This size predicted a BstX I restriction site 1.5 kb upstream to the gene coding region. Cloning of this fragment was accomplished through circularization of BstX I restriction digests and inverse PCR-mediated amplification. Sequence analysis of the gene 5' flanking domain enabled the design of oligonucleotide primers with the usual forward/reverse orientation, and additional clones were generated from native genomic DNA using a high fidelity thermoresistant DNA polymerase. Reverse transcription-PCR (RT-PCR) and primer extension analysis mapped the major transcription start site 422 nucleotides upstream to the translation initiation codon. The promoter region lacks a TATA box but contains a CAAT box and a consensus binding site for transcription factor Sp1. Multiple potential binding sites for the transcription factor PEA3 are clustered in two DNA portions located 0.6 kb and 1 kb upstream to the coding region. In addition, sequences homologous to glucocorticoid response elements are present and might be responsible for the regulation by adrenal steroids of vasopressin-dependent adenylyl cyclase activity in the kidney.

摘要

腺苷酸环化酶偶联的血管加压素V2受体最近已被克隆,并在大鼠中显示是由两种可变剪接变体的主要形式产生的。为了开始阐明该受体的转录调控机制,我们分离了大鼠血管加压素V2受体基因的5'侧翼区域并对其启动子序列进行了表征。反向聚合酶链反应(PCR)方法可扩增与已知序列片段相邻的DNA片段,被用作筛选基因组DNA文库的替代方法。使用包含部分编码区域的探针,我们首先通过Southern印迹分析鉴定出一个2.3千碱基(kb)的单一BstX I杂交片段。这个大小预测在基因编码区域上游1.5 kb处有一个BstX I限制性酶切位点。通过BstX I限制性酶切片段的环化和反向PCR介导的扩增完成了该片段的克隆。对基因5'侧翼结构域的序列分析使得能够设计具有常规正向/反向方向的寡核苷酸引物,并使用高保真耐热DNA聚合酶从天然基因组DNA中产生额外的克隆。逆转录PCR(RT-PCR)和引物延伸分析将主要转录起始位点定位在翻译起始密码子上游422个核苷酸处。启动子区域缺乏TATA盒,但含有一个CAAT盒和转录因子Sp1的共有结合位点。转录因子PEA3的多个潜在结合位点聚集在编码区域上游0.6 kb和1 kb的两个DNA部分中。此外,存在与糖皮质激素反应元件同源的序列,可能负责肾上腺类固醇对肾脏中血管加压素依赖性腺苷酸环化酶活性的调节。

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