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首页> 外文期刊>Cell Reports >Article Differential Occupancy of Two GA-Binding Proteins Promotes Targeting of the Drosophila Dosage Compensation Complex to the Male X Chromosome
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Article Differential Occupancy of Two GA-Binding Proteins Promotes Targeting of the Drosophila Dosage Compensation Complex to the Male X Chromosome

机译:两种GA结合蛋白的差异占有率促进果蝇剂量补偿复合物靶向男性X染色体。

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Summary Little is known about how variation in sequence composition alters transcription factor occupancy to precisely recruit large transcription complexes. A?key model for understanding how transcription complexes are targeted is the Drosophila dosage compensation system in which the male-specific lethal (MSL) transcription complex specifically identifies and regulates the male X chromosome. The chromatin-linked adaptor for MSL proteins (CLAMP) zinc-finger protein targets MSL to the X chromosome?but also binds to GA-rich sequence elements throughout the genome. Furthermore, the GAGA-associated factor (GAF) transcription factor also recognizes GA-rich sequences but does not associate with the MSL complex. Here, we demonstrate that MSL complex recruitment sites are optimal CLAMP targets. Specificity for CLAMP binding versus GAF binding is driven by variability in sequence composition within similar GA-rich motifs. Therefore, variation?within seemingly similar cis elements drives the context-specific targeting of a large transcription complex.
机译:小结关于序列组成的变化如何改变转录因子的占有率以精确募集大的转录复合物知之甚少。果蝇剂量补偿系统是理解转录复合物如何靶向的一个关键模型,其中雄性特异性致死(MSL)转录复合物专门识别并调节雄性X染色体。染色质连接的MSL蛋白(CLAMP)锌指蛋白衔接子将MSL靶向X染色体,但也与整个基因组中富含GA的序列元件结合。此外,GAGA相关因子(GAF)转录因子还识别富含GA的序列,但不与MSL复合体相关。在这里,我们证明了MSL复杂的招聘站点是最佳CLAMP目标。 CLAMP结合与GAF结合的特异性受相似的富含GA的基序内序列组成的可变性驱动。因此,看似相似的顺式元件内的变异驱动了大型转录复合体的背景特异性靶向。

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