Kind Jop, Akhtar Asifa
European Molecular Biology Laboratory, Heidelberg 69117, Germany.
Genes Dev. 2007 Aug 15;21(16):2030-40. doi: 10.1101/gad.430807.
Dosage compensation is a process required to balance the expression of X-linked genes between males and females. In Drosophila this is achieved by targeting the dosage compensation complex or the male-specific lethal (MSL) complex to the male X chromosome. In order to study the mechanism of targeting, we have studied two X-chromosomal genes, mof and CG3016, using chromatin immunoprecipitation as well as immuno-FISH analysis on transgenic flies. We show that MSL complex recruitment requires the genes to be in a transcriptionally active state. MSL complex recruitment is reversible because blocking transcription severely reduces MSL binding to its target genes. Furthermore, targeting cues are found toward the 3' end of the gene and depend on the passage of the transcription machinery through the gene, whereby the type of promoter and the direction of transcription are dispensable. We propose a model of dynamic MSL complex binding to active genes based on exposed DNA target elements.
剂量补偿是平衡雄性和雌性之间X连锁基因表达所需的一个过程。在果蝇中,这是通过将剂量补偿复合体或雄性特异性致死(MSL)复合体靶向雄性X染色体来实现的。为了研究靶向机制,我们使用染色质免疫沉淀以及对转基因果蝇进行免疫荧光原位杂交分析,研究了两个X染色体基因,即mof和CG3016。我们发现MSL复合体的招募需要基因处于转录活跃状态。MSL复合体的招募是可逆的,因为阻断转录会严重降低MSL与其靶基因的结合。此外,靶向线索位于基因的3'端,并且依赖于转录机器通过该基因,由此启动子类型和转录方向是可有可无的。我们基于暴露的DNA靶元件提出了一个MSL复合体与活跃基因动态结合的模型。