Satyamoorthy K, Samulewicz S J, Thornburg L D, Basu A, Howe C C
The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, USA.
Nucleic Acids Res. 1997 Aug 1;25(15):3169-74. doi: 10.1093/nar/25.15.3169.
The SPARC gene 5'flanking sequence has been shown to contain enhancer elements, but also negative control elements immediately upstream of the enhancer elements. Although these 5'enhancer elements are active in F9 and PYS-2 cells, their activities are nullified by the 5'repressor activity. In the present study we have identified within intron 1 between nucleotides (nt) +5000 and +5150 of the SPARC gene an enhancer element that bound to two transcription factors of 48 and 52 kDa and between nt +5000 and +5523 a DNase I hypersensitive site. Furthermore, a region containing the 3'intron 1 enhancer element, together with the 5'enhancer elements, neutralized the 5'repressor activity and stimulated efficient transcription. The resulting SPARC promoter activity is about equal in F9, differentiated F9 and PYS-2 cells. We consistently found that the rate of SPARC transcription is nearly the same in F9 and PYS-2 cells. Association of the 3'enhancer element in intron 1 with the DNase I hypersensitive site suggests that both play a role in regulating SPARC expression in vivo .
SPARC基因的5'侧翼序列已被证明含有增强子元件,但在增强子元件紧邻的上游也存在负调控元件。尽管这些5'增强子元件在F9和PYS - 2细胞中具有活性,但其活性会被5'抑制活性所抵消。在本研究中,我们在SPARC基因第1内含子中核苷酸(nt)+5000至+5150之间鉴定出一个与48 kDa和52 kDa的两种转录因子结合的增强子元件,并在nt +5000至+5523之间鉴定出一个DNase I超敏位点。此外,一个包含第1内含子3'增强子元件以及5'增强子元件的区域,抵消了5'抑制活性并刺激了高效转录。由此产生的SPARC启动子活性在F9、分化的F9和PYS - 2细胞中大致相等。我们一直发现,F9和PYS - 2细胞中SPARC的转录速率几乎相同。第1内含子中的3'增强子元件与DNase I超敏位点之间的关联表明,两者在体内调节SPARC表达中均发挥作用。