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小鼠多囊蛋白2启动子的克隆与特性分析

Cloning and characterization of the murine pkd2 promoter.

作者信息

Park J H, Li L, Cai Y, Hayashi T, Dong F, Maeda Y, Rubin C, Somlo S, Wu G

机构信息

Department of Medicine, Albert Einstein College of Medicine, Bronx, New York, 10461, USA.

出版信息

Genomics. 2000 Jun 15;66(3):305-12. doi: 10.1006/geno.2000.6197.

Abstract

Pkd2, the mouse homologue of PKD2, the gene responsible for the second form of autosomal dominant polycystic kidney disease, is highly expressed in fetal and adult mouse tissues. The expression of Pkd2 is developmentally regulated. To begin to dissect out the regulatory mechanism of Pkd2 expression, we characterized the basic features of the gene structure and identified potential cis-regulatory elements of Pkd2 transcription. Pkd2 spans 42 kb with a transcription start site 165 bp upstream of the translation start codon. Exon 1 of Pkd2 is 755 bp long, and the full-length transcript is 5215 bp. The Pkd2 promoter region is GC-rich and lacks a consensus TATA or CCAAT box. Consensus binding sites for the transcription factors Sp-1, NF-1, and Ap-2 lie in the 5' upstream region of Pkd2. The Sp-1 binding site is conserved in 5' upstream sequences of both the mouse and the human genes. The CAT activity of a series of upstream segments from +178 to -2749 was assessed in MDCK, LLCPK1, COS-7, and HEK293 cells. Deletion analysis identified a 409-bp fragment from position -221 to +178 responsible for basal promoter activity. A 922-bp fragment from -744 to +178 showed the highest level of CAT activity in the cell lines tested. These data define a functional promoter candidate region for Pkd2.

摘要

Pkd2是常染色体显性多囊肾病第二种类型相关基因PKD2的小鼠同源物,在胎儿及成年小鼠组织中高表达。Pkd2的表达受发育调控。为了深入剖析Pkd2表达的调控机制,我们对该基因结构的基本特征进行了表征,并确定了Pkd2转录的潜在顺式调控元件。Pkd2跨度为42 kb,转录起始位点在翻译起始密码子上游165 bp处。Pkd2的外显子1长755 bp,全长转录本为5215 bp。Pkd2启动子区域富含GC,缺乏共有TATA或CCAAT框。转录因子Sp-1、NF-1和Ap-2的共有结合位点位于Pkd2的5'上游区域。Sp-1结合位点在小鼠和人类基因的5'上游序列中保守。在MDCK、LLCPK1、COS-7和HEK293细胞中评估了从+178到 -2749的一系列上游片段的CAT活性。缺失分析确定了一个从 -221到 +178的409 bp片段负责基础启动子活性。在测试的细胞系中,一个从 -744到 +178的922 bp片段显示出最高水平的CAT活性。这些数据定义了Pkd2的一个功能性启动子候选区域。

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