Yamaguchi M, Hirose F, Nishida Y, Matsukage A
Laboratory of Cell Biology, Aichi Cancer Center Research Institute, Nagoya, Japan.
Mol Cell Biol. 1991 Oct;11(10):4909-17. doi: 10.1128/mcb.11.10.4909-4917.1991.
A 631-bp fragment containing the 5'-flanking region of the Drosophila melanogaster proliferating-cell nuclear antigen (PCNA) gene was placed upstream of the chloramphenicol acetyltransferase (CAT) gene of a CAT vector. A transient expression assay of CAT activity in Drosophila Kc cells transfected with this plasmid and a set of 5'-deletion derivatives revealed that the promoter function resided within a 192-bp region (-168 to +24 with respect to the transcription initiation site). Cotransfection with a zerknüllt (zen)-expressing plasmid specifically repressed CAT expression. However, cotransfection with expression plasmids for a nonfunctional zen mutation, even-skipped, or bicoid showed no significant effect on CAT expression. RNase protection analysis revealed that the repression by zen was at the transcription step. The target sequence of zen was mapped within the 34-bp region (-119 to -86) of the PCNA gene promoter, even though it lacked zen protein-binding sites. Transgenic flies carrying the PCNA gene regulatory region (-607 to +137 or -168 to +137) fused with lacZ were established. When these flies were crossed with the zen mutant, ectopic expression of lacZ was observed in the dorsal region of gastrulating embryos carrying the transgene with either construct. These results indicate that zen indirectly represses PCNA gene expression, probably by regulating the expression of some transcription factor(s) that binds to the PCNA gene promoter.
将一段包含黑腹果蝇增殖细胞核抗原(PCNA)基因5'侧翼区的631碱基对片段置于氯霉素乙酰转移酶(CAT)载体的CAT基因上游。用该质粒及其一系列5'缺失衍生物转染果蝇Kc细胞后对CAT活性进行瞬时表达分析,结果显示启动子功能存在于一个192碱基对区域(相对于转录起始位点为-168至+24)内。与表达零缺刻(zen)的质粒共转染可特异性抑制CAT表达。然而,与无功能的zen突变体、偶数缺失或双尾的表达质粒共转染对CAT表达无显著影响。核糖核酸酶保护分析表明,zen的抑制作用发生在转录步骤。尽管PCNA基因启动子的34碱基对区域(-119至-86)缺乏zen蛋白结合位点,但仍将zen的靶序列定位于此区域内。构建了携带与lacZ融合的PCNA基因调控区(-607至+137或-168至+137)的转基因果蝇。当这些果蝇与zen突变体杂交时,在携带任一构建体转基因的原肠胚的背侧区域观察到lacZ的异位表达。这些结果表明,zen可能通过调节某些与PCNA基因启动子结合的转录因子的表达来间接抑制PCNA基因的表达。