Pan Li, Jones Craig A, Glenn Sean T, Gross Kenneth W
Dept. of Molecular and Cellular Biology, Roswell Park Cancer Institute, Elm and Carlton Sts., Buffalo, NY 14263-0001, USA.
Am J Physiol Renal Physiol. 2004 Jun;286(6):F1107-15. doi: 10.1152/ajprenal.00319.2003. Epub 2004 Feb 3.
An enhancer at -2.6 kb and a HOX.PBX-binding site at -60 bp have been demonstrated to be critical to expression of the mouse renin gene (Ren-1(c)) in As4.1 cells. In this report, we show that a region (-197 to -70) immediately 5' to the HOX.PBX-binding site is also critical for Ren-1(c) expression. Deletion of this region in a construct containing 4.1 kb of the Ren-1(c) 5'-flanking sequence resulted in a 99% reduction in Ren-1(c) promoter activity in As4.1 cells, suggesting the pivotal role for the region in the regulation of the mouse renin gene. Electrophoretic mobility shift and supershift assays have identified two nuclear factor I-binding sites and a Sp1/Sp3-binding site within the distal portion of the region (-197 to -103). Mutation of these three sites caused a 90% decrease in Ren-1(c) promoter activity. Mutational analysis and electrophoretic mobility shift assays have also identified three additional transcription factor-binding sites within the region from -103 to -69, each of which contributes to high-level expression of Ren-1(c) in As4.1 cells. Finally, we have shown that the Ren-1(c) enhancer is the target for endothelin-1 (ET-1)-induced inhibition of Ren-1(c) expression and the transcription factor-binding sites in the proximal promoter are required for the maximal ET-1 inhibitory effect.
已证明位于-2.6 kb处的增强子和位于-60 bp处的HOX.PBX结合位点对As4.1细胞中小鼠肾素基因(Ren-1(c))的表达至关重要。在本报告中,我们表明HOX.PBX结合位点紧邻的5'端区域(-197至-70)对Ren-1(c)的表达也至关重要。在含有4.1 kb Ren-1(c) 5'侧翼序列的构建体中缺失该区域,导致As4.1细胞中Ren-1(c)启动子活性降低99%,表明该区域在小鼠肾素基因调控中起关键作用。电泳迁移率变动分析和超迁移分析已在该区域远端(-197至-103)鉴定出两个核因子I结合位点和一个Sp1/Sp3结合位点。这三个位点的突变导致Ren-1(c)启动子活性降低90%。突变分析和电泳迁移率变动分析还在-103至-69区域鉴定出另外三个转录因子结合位点,每个位点都有助于Ren-1(c)在As4.1细胞中的高水平表达。最后,我们表明Ren-1(c)增强子是内皮素-1(ET-1)诱导的Ren-1(c)表达抑制的靶点,近端启动子中的转录因子结合位点是ET-1最大抑制作用所必需的。