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吉普赛绝缘子在果蝇胚胎中可作为启动子特异性沉默子发挥作用。

The gypsy insulator can function as a promoter-specific silencer in the Drosophila embryo.

作者信息

Cai H N, Levine M

机构信息

Department of Molecular and Cellular Biology, University of California, Berkeley 94720, USA.

出版信息

EMBO J. 1997 Apr 1;16(7):1732-41. doi: 10.1093/emboj/16.7.1732.

Abstract

The Drosophila gypsy retrotransposon disrupts gene activity by blocking the interactions of distal enhancers with target promoters. This enhancer-blocking activity is mediated by a 340 bp insulator DNA within gypsy. The insulator contains a cluster of binding sites for a zinc finger protein, suppressor of Hairy wing [su(Hw)]. Recent studies have shown that a second protein, mod(mdg4), is also important for normal insulator function. Mutations in mod(mdg4) exert paradoxical effects on different gypsy-induced phenotypes. For example, it enhances yellow2 but suppresses cut6. Here, we employ a stripe expression assay in transgenic embryos to investigate the role of mod(mdg4) in gypsy insulator activity. The insulator was inserted between defined enhancers and placed among divergently transcribed reporter genes (white and lacZ) containing distinct core promoter sequences. These assays indicate that mod(mdg4) is essential for the enhancer-blocking activity of the insulator DNA. Moreover, reductions in mod(mdg4)+ activity cause the insulator to function as a promoter-specific silencer that selectively represses white, but not lacZ. The repression of white does not affect the expression of the closely linked lacZ gene, suggesting that the insulator does not propagate changes in chromatin structure. These results provide an explanation for why mod(mdg4) exerts differential effects on different gypsy-induced mutations.

摘要

果蝇的gypsy逆转座子通过阻断远端增强子与靶启动子之间的相互作用来破坏基因活性。这种增强子阻断活性由gypsy内一段340 bp的绝缘子DNA介导。该绝缘子含有一簇锌指蛋白毛翅抑制因子[su(Hw)]的结合位点。最近的研究表明,另一种蛋白mod(mdg4)对正常的绝缘子功能也很重要。mod(mdg4)的突变对不同的gypsy诱导表型产生矛盾的影响。例如,它增强yellow2但抑制cut6。在这里,我们在转基因胚胎中采用条带表达分析来研究mod(mdg4)在gypsy绝缘子活性中的作用。将绝缘子插入特定的增强子之间,并置于含有不同核心启动子序列的反向转录报告基因(白色和lacZ)之间。这些分析表明,mod(mdg4)对于绝缘子DNA的增强子阻断活性至关重要。此外,mod(mdg4)+活性的降低导致绝缘子起到启动子特异性沉默子的作用,选择性地抑制白色基因,但不抑制lacZ基因。对白色基因的抑制不影响紧密相连的lacZ基因的表达,这表明绝缘子不会传播染色质结构的变化。这些结果解释了为什么mod(mdg4)对不同的gypsy诱导突变会产生不同影响。

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