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Sp1转录因子对大鼠钠氢交换体亚型2(NHE-2)基因的转录调控

Transcriptional regulation of rat Na(+)/H(+) exchanger isoform-2 (NHE-2) gene by Sp1 transcription factor.

作者信息

Bai L, Collins J F, Xu H, Ghishan F K

机构信息

Department of Pediatrics and Physiology, Steele Memorial Children's Research Center, University of Arizona Health Sciences Center, Tucson, Arizona 85724, USA.

出版信息

Am J Physiol Cell Physiol. 2001 May;280(5):C1168-75. doi: 10.1152/ajpcell.2001.280.5.C1168.

Abstract

The rat Na(+)/H(+) exchanger isoform-2 (NHE-2) gene promoter lacks a TATA box and is very GC rich. A minimal promoter extending from bp -36 to +116 directs high-level expression of NHE-2 in mouse inner medullary collecting duct (mIMCD-3) cells. Four Sp1 consensus elements were found in this region. The introduction of mutations within these Sp1 consensus elements and DNA footprinting revealed that only two of them were utilized and are critical for basal transcriptional activation in mIMCD-3 cells. The use of Sp1, Sp3, and Sp4 antisera in electrophoretic mobility shift assays demonstrated that Sp1, Sp3, and Sp4 bound to this minimal promoter. We further analyzed the transcriptional regulation of NHE-2 by members of the Sp1 multigene family. In Drosophila SL2 cells, which lack endogenous Sp1, the minimal promoter cannot drive transcription. Introduction of Sp1 activated transcription over 100-fold, suggesting that Sp1 is critical for transcriptional regulation. However, neither Sp3 nor Sp4 was able to activate transcription in these cells. Furthermore, in mIMCD-3 cells, Sp1-mediated transcriptional activation was repressed by expression of Sp3 and Sp4. These data suggest that Sp1 is critical for the basal promoter function of rat NHE-2 and that Sp3 and Sp4 may repress transcriptional activation by competing with Sp1 for binding to core cis-elements.

摘要

大鼠钠氢交换体同工型2(NHE - 2)基因启动子缺乏TATA盒,且富含GC。一个从 - 36碱基对延伸至 + 116碱基对的最小启动子可指导NHE - 2在小鼠内髓集合管(mIMCD - 3)细胞中高水平表达。在该区域发现了四个Sp1共有元件。在这些Sp1共有元件内引入突变并进行DNA足迹分析表明,其中只有两个被利用,且对mIMCD - 3细胞中的基础转录激活至关重要。在电泳迁移率变动分析中使用Sp1、Sp3和Sp4抗血清表明,Sp1、Sp3和Sp4与该最小启动子结合。我们进一步分析了Sp1多基因家族成员对NHE - 2的转录调控。在缺乏内源性Sp1的果蝇SL2细胞中,最小启动子无法驱动转录。引入Sp1可使转录激活超过100倍,这表明Sp1对转录调控至关重要。然而,Sp3和Sp4都无法在这些细胞中激活转录。此外,在mIMCD - 3细胞中,Sp1介导的转录激活被Sp3和Sp4的表达所抑制。这些数据表明,Sp1对大鼠NHE - 2的基础启动子功能至关重要,并且Sp3和Sp4可能通过与Sp1竞争结合核心顺式元件来抑制转录激活。

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