Melnikova Larisa, Gause Maria, Georgiev Pavel
Department of the Control of Genetic Processes, Institute of Gene Biology, Russian Academy of Sciences, Moscow 117334, Russia.
Genetics. 2002 Apr;160(4):1549-60. doi: 10.1093/genetics/160.4.1549.
The best-characterized insulator in Drosophila melanogaster is the Su(Hw)-binding region contained within the gypsy retrotransposon. In the y(2) mutant, Su(Hw) protein partially inhibits yellow transcription by blocking the function of transcriptional enhancers located distally from the yellow promoter with respect to gypsy. Previously we have shown that yellow enhancers can overcome inhibition by a downstream insulator in the y(rh1) allele, when a second gypsy element is located upstream of the enhancers. To understand how two insulators neutralize each other, we isolated various deletions that terminate in the regulatory region of the y(rh1) allele. To generate these alleles we used DNA elongation by gene conversion of the truncated chromosomes at the end of the yellow regulatory region. We found that gypsy insulator can function at the end of the truncated chromosome. Addition of the gypsy insulator upstream of the yellow enhancers overcomes the enhancer-blocking activity of the gypsy insulator inserted between the yellow enhancers and promoter. These results suggest that the gypsy insulators do not form separate transcriptional domains that delimit the interactions between enhancers and promoters.
黑腹果蝇中特征最明确的绝缘子是位于gypsy逆转录转座子内的与Su(Hw)结合的区域。在y(2)突变体中,Su(Hw)蛋白通过阻断相对于gypsy位于黄色启动子远端的转录增强子的功能,部分抑制黄色基因的转录。此前我们已经表明,当第二个gypsy元件位于增强子上游时,黄色增强子可以克服y(rh1)等位基因中位于下游的绝缘子的抑制作用。为了了解两个绝缘子如何相互抵消作用,我们分离了各种在y(rh1)等位基因调控区域终止的缺失片段。为了产生这些等位基因,我们利用黄色调控区域末端截短染色体的基因转换进行DNA延伸。我们发现gypsy绝缘子可以在截短染色体的末端发挥作用。在黄色增强子上游添加gypsy绝缘子可克服插入在黄色增强子和启动子之间的gypsy绝缘子的增强子阻断活性。这些结果表明,gypsy绝缘子不会形成分隔增强子和启动子之间相互作用的独立转录结构域。