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Post-transcription initiation function of the ubiquitous SAGA complex in tissue-specific gene activation

机译:普遍存在的SAGA复合体在组织特异性基因激活中的转录后起始功能

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摘要

The Spt–Ada–Gcn5–acetyltransferase (SAGA) complex was discovered from Saccharomyces cerevisiae and has been well characterized as an important transcriptional coactivator that interacts both with sequence-specific transcription factors and the TATA-binding protein TBP. SAGA contains a histone acetyltransferase and a ubiquitin protease. In metazoans, SAGA is essential for development, yet little is known about the function of SAGA in differentiating tissue. We analyzed the composition, interacting proteins, and genomic distribution of SAGA in muscle and neuronal tissue of late stage Drosophila melanogaster embryos. The subunit composition of SAGA was the same in each tissue; however, SAGA was associated with considerably more transcription factors in muscle compared with neurons. Consistent with this finding, SAGA was found to occupy more genes specifically in muscle than in neurons. Strikingly, SAGA occupancy was not limited to enhancers and promoters but primarily colocalized with RNA polymerase II within transcribed sequences. SAGA binding peaks at the site of RNA polymerase pausing at the 5′ end of transcribed sequences. In addition, many tissue-specific SAGA-bound genes required its ubiquitin protease activity for full expression. These data indicate that in metazoans SAGA plays a prominent post-transcription initiation role in tissue-specific gene expression.
机译:Spt-Ada-Gcn5-乙酰基转移酶(SAGA)复合物是从酿酒酵母中发现的,并已被很好地表征为重要的转录共激活因子,与序列特异性转录因子和TATA结合蛋白TBP相互作用。 SAGA包含组蛋白乙酰转移酶和泛素蛋白酶。在后生动物中,SAGA对于发育至关重要,但对SAGA在分化组织中的功能了解甚少。我们分析了后期果蝇胚胎肌肉和神经元组织中SAGA的组成,相互作用蛋白和基因组分布。每个组织中SAGA的亚基组成均相同;然而,与神经元相比,SAGA与肌肉中更多的转录因子有关。与该发现一致的是,发现SAGA在肌肉中比在神经元中占有更多的基因。令人惊讶的是,SAGA的使用不限于增强子和启动子,而是主要与转录序列中的RNA聚合酶II共定位。 SAGA结合峰在RNA聚合酶的位点暂停,在转录序列的5'端暂停。另外,许多组织特异性SAGA结合基因需要其泛素蛋白酶活性才能完整表达。这些数据表明,在后生动物中,SAGA在组织特异性基因表达中起着重要的转录后起始作用。

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