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果蝇的35UZ转座子揭示了胚胎期和幼虫期转录调控维持方面的差异。

The 35UZ transposon of Drosophila melanogaster reveals differences in maintenance of transcriptional control between embryonic and larval stages.

作者信息

Docquier F, Randsholt N B, Deutsch J, Santamaria P

机构信息

Centre de Génétique Moléculaire, CNRS Gif sur Yvette, France.

出版信息

Int J Dev Biol. 1999 May;43(3):275-8.

Abstract

The D. melanogaster transposon P[35UZ] contains a lacZ reporter gene fused to 35 kb of Ubx upstream sequences which drive a Ubx-like expression in embryos and in metathoracic imaginal discs. Transposition of P[35UZ] followed by analysis of different lines in wild-type and mutant backgrounds allowed us to analyze the interplay between Ubx regulatory elements, including the Polycomb response element (PRE), located inside the transposon and cis-acting regulatory elements, located outside. We found that all lines show a Ubx-like beta-galactosidase expression pattern in the embryo, but proximity to strong imaginal enhancers can change this pattern drastically. These data illustrate how maintenance of gene expression depends on the chromosomal environment and on dynamic interactions between all developmentally regulated enhancers located close to a promoter under PcG control.

摘要

黑腹果蝇转座子P[35UZ]包含一个与35 kb的Ubx上游序列融合的lacZ报告基因,该序列在胚胎和后胸成虫盘驱动类似Ubx的表达。P[35UZ]转座后,在野生型和突变背景下分析不同品系,使我们能够分析Ubx调控元件之间的相互作用,包括位于转座子内部的多梳反应元件(PRE)和位于外部的顺式作用调控元件。我们发现,所有品系在胚胎中都表现出类似Ubx的β-半乳糖苷酶表达模式,但靠近强大的成虫增强子会极大地改变这种模式。这些数据说明了基因表达的维持如何依赖于染色体环境以及在PcG控制下靠近启动子的所有发育调控增强子之间的动态相互作用。

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