Gao C, Wang H, Huang C, Kong X
Clinical Immunology Center, Changzheng Hospital, Second Military Medical University, Shanghai 200003, China.
Chin Med J (Engl). 1999 Apr;112(4):316-20.
To clarify the segment and sequence in mouse alpha 2(I) procollagen gene which are responsible for high transcriptional activity during fibrogenesis.
This study was focused on further fractional analysis of 2 kb-length mouse alpha 2(I) procollagen gene promoter activity. Six chimeric genes were constructed in which various lengths of sequences between 2000 bp upstream of the start of transcription of the mouse alpha 2 (I) procollagen gene and 54 bp downstream of this site were fused to chloramphenicol acetyltransferase (CAT) reporter gene. These recombinant plasmids were transfected transiently to collagen-producing cells (NIH/3T3) and non-collagen-producing cells (COS7) with liposomal transfection method. The activities of putative promoters were observed and compared by means of CAT measurement in the transfected cells.
The highest and partial cell specific CAT expression was observed in construction driven by -780 to bp fragment. The construction containing sequence deleted the proximal 500 bp from the transcription start site and part of exon I, and resulted in the lowest CAT expression.
Some essential elements might exist in the 500 bp fraction proximal to transcription start site and part of exon I in mouse alpha 2(I) procollagen gene. The high potential promoter sequence between -780 bp from the start of transcription site and bp from this site is of great significance in our following study of searching for specific DNA-binding proteins in activated collagen-producing cells.
阐明小鼠α2(I)前胶原基因中在纤维化形成过程中负责高转录活性的片段和序列。
本研究聚焦于对2 kb长度的小鼠α2(I)前胶原基因启动子活性进行进一步的分段分析。构建了六个嵌合基因,其中小鼠α2(I)前胶原基因转录起始点上游2000 bp与该位点下游54 bp之间的不同长度序列与氯霉素乙酰转移酶(CAT)报告基因融合。采用脂质体转染法将这些重组质粒瞬时转染至产胶原细胞(NIH/3T3)和非产胶原细胞(COS7)。通过测定转染细胞中的CAT来观察和比较推定启动子的活性。
在由-780至bp片段驱动的构建体中观察到最高且部分细胞特异性的CAT表达。包含从转录起始位点近端缺失500 bp和部分外显子I序列的构建体导致最低的CAT表达。
在小鼠α2(I)前胶原基因转录起始位点近端的500 bp片段和部分外显子I中可能存在一些关键元件。转录起始位点-780 bp至该位点bp之间的高潜力启动子序列在我们后续寻找活化产胶原细胞中特异性DNA结合蛋白的研究中具有重要意义。