Yet S F, Folta S C, Jain M K, Hsieh C M, Maemura K, Layne M D, Zhang D, Marria P B, Yoshizumi M, Chin M T, Perrella M A, Lee M E
Cardiovascular Biology Laboratory, Harvard School of Public Health, Boston, Massachusetts 02115, USA.
J Biol Chem. 1998 Apr 24;273(17):10530-7. doi: 10.1074/jbc.273.17.10530.
Several members of the LIM protein family have important roles in development and differentiation. We recently isolated a rat cDNA encoding a new member of this family, CRP2/SmLIM, that contains two LIM domains and is expressed preferentially in vascular smooth muscle cells (VSMC). To study the molecular mechanisms that regulate VSMC-specific transcription of the Crp2/SmLim gene, we cloned the cDNA and gene of mouse Crp2/SmLim. Mouse Crp2/SmLim is a single copy gene of six exons and five introns spanning approximately 20 kilobases of genomic DNA. By 5'-rapid amplification of cDNA ends and S1 nuclease protection assay, we determined that the transcription start site is an A residue 80 base pairs 5' of the translation initiation codon. A TATA-like sequence is located 27 base pairs 5' of the transcription start site, and there are potential cis-acting elements (GATA, Sp1, AP-2, E box, CCAC box, and GArC motif) in the 5'-flanking sequence. In transient transfection assays in rat aortic smooth muscle cells in primary culture, 5 kilobases of the Crp2/SmLim 5'-flanking sequence generated a high level of luciferase reporter gene activity. By deletion analysis and gel mobility shift assay, we found that the region between bases -74 and -39 of this 5 kilobase DNA fragment binds Sp1 and confers basal promoter activity in the Crp2/SmLim gene. In vitro, the 5-kilobase fragment was active in multiple cell types. In vivo, however, the 5-kilobase fragment directed high level expression of the lacZ reporter gene preferentially in the VSMC of transgenic mice, indicating the presence of VSMC-specific element(s) in this fragment.
LIM蛋白家族的几个成员在发育和分化过程中发挥着重要作用。我们最近分离出一个大鼠cDNA,它编码该家族的一个新成员CRP2/SmLIM,该成员含有两个LIM结构域,且在血管平滑肌细胞(VSMC)中优先表达。为了研究调控Crp2/SmLim基因VSMC特异性转录的分子机制,我们克隆了小鼠Crp2/SmLim的cDNA和基因。小鼠Crp2/SmLim是一个单拷贝基因,由六个外显子和五个内含子组成,跨越约20千碱基的基因组DNA。通过5'-cDNA末端快速扩增和S1核酸酶保护试验,我们确定转录起始位点是翻译起始密码子5'端80个碱基对处的一个A残基。一个类似TATA的序列位于转录起始位点5'端27个碱基对处,并且在5'-侧翼序列中有潜在的顺式作用元件(GATA、Sp1、AP-2、E盒、CCAC盒和GArC基序)。在原代培养的大鼠主动脉平滑肌细胞的瞬时转染试验中,Crp2/SmLim 5'-侧翼序列的5千碱基产生了高水平的荧光素酶报告基因活性。通过缺失分析和凝胶迁移率变动分析,我们发现这个5千碱基DNA片段中碱基-74和-39之间的区域结合Sp1并赋予Crp2/SmLim基因基础启动子活性。在体外,这个5千碱基的片段在多种细胞类型中具有活性。然而,在体内,这个5千碱基的片段优先在转基因小鼠的VSMC中指导lacZ报告基因的高水平表达,表明该片段中存在VSMC特异性元件。