Jung Y K, Kunczt C J, Pearson R K, Fricker L D, Dixon J E
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461.
Mol Endocrinol. 1992 Dec;6(12):2027-37. doi: 10.1210/mend.6.12.1491689.
To identify cis-acting elements involved with the expression of the rat carboxypeptidase-E (CPE) gene, constructs containing various regions of the 5'-flanking region of the CPE gene attached to the luciferase reporter gene were transiently expressed in cell lines derived from pituitary (AtT-20 and GH4C1), liver (SK-HEP-1), and kidney (HEK293 and COS1). Regions of the CPE gene spanning the major transcription initiation site (-12 to 47) are sufficient for low levels of transcription. Activity is enhanced 3- to 15-fold by sequences present between -12 and -395 in all cell lines examined. Sequences between -395 and -3081 influenced transcription activity up to 5-fold in some, but not all, cell lines. There was no correlation between the transcription activities of the various constructs and the level of endogenous CPE mRNA in the cell lines, indicating that the tissue-specific elements responsible for the large variations in endogenous CPE mRNA levels are not present within -3081 to 47. The region between -395 and 45 was examined in greater detail using transient expression assays and DNase-I protection analysis. Transcription activity is enhanced in GH4C1 and HEK293 cells by sequence present between -12 and -84; this region contains a potential GC box, which binds factors present in GH4C1 nuclear extracts. Other regions between -340 and 80 that bind proteins in the GH4C1 nuclear extracts include the major transcription initiation site, which has homology to the initiator sequence; the pituitary-specific transcription initiation sites (-101 and -105); and sequences with homology to NF-1, Pan-1, simian virus-40 enhancer core, and AP-2-binding sites. Taken together, these results suggest that basal expression of the CPE gene from its major transcription initiation site, which does not contain an up-stream TATA box, is primarily under the control of an initiator-like element together with an upstream GC box.
为了鉴定参与大鼠羧肽酶 - E(CPE)基因表达的顺式作用元件,将含有CPE基因5'侧翼区不同区域并连接荧光素酶报告基因的构建体在源自垂体(AtT - 20和GH4C1)、肝脏(SK - HEP - 1)和肾脏(HEK293和COS1)的细胞系中瞬时表达。跨越主要转录起始位点(-12至47)的CPE基因区域足以进行低水平转录。在所有检测的细胞系中,-12至-395之间的序列可使活性增强3至15倍。-395至-3081之间的序列在一些但并非所有细胞系中可使转录活性提高达5倍。各种构建体的转录活性与细胞系中内源性CPE mRNA水平之间没有相关性,这表明负责内源性CPE mRNA水平大幅变化的组织特异性元件不存在于-3081至47之间。使用瞬时表达分析和DNase - I保护分析对-395至45之间的区域进行了更详细的研究。-12至-84之间的序列可增强GH4C1和HEK293细胞中的转录活性;该区域包含一个潜在的GC框,可结合GH4C1核提取物中的因子。在GH4C1核提取物中与蛋白质结合的-340至80之间的其他区域包括主要转录起始位点,其与起始子序列具有同源性;垂体特异性转录起始位点(-101和-105);以及与NF - 1、Pan - 1、猿猴病毒40增强子核心和AP - 2结合位点具有同源性的序列。综上所述,这些结果表明,CPE基因从其主要转录起始位点(该位点不包含上游TATA框)的基础表达主要受起始子样元件和上游GC框的控制。