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Whole-Genome Analysis Reveals That Active Heat Shock Factor Binding Sites Are Mostly Associated with Non-Heat Shock Genes in Drosophila melanogaster

机译:全基因组分析显示,果蝇的主动热激因子结合位点与非热激基因多半相关。

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摘要

During heat shock (HS) and other stresses, HS gene transcription in eukaryotes is up-regulated by the transcription factor heat shock factor (HSF). While the identities of the major HS genes have been known for more than 30 years, it has been suspected that HSF binds to numerous other genes and potentially regulates their transcription. In this study, we have used a chromatin immunoprecipitation and microarray (ChIP-chip) approach to identify 434 regions in the Drosophila genome that are bound by HSF. We have also performed a transcript analysis of heat shocked Kc167 cells and third instar larvae and compared them to HSF binding sites. The heat-induced transcription profiles were quite different between cells and larvae and surprisingly only about 10% of the genes associated with HSF binding sites show changed transcription. There were also genes that showed changes in transcript levels that did not appear to correlate with HSF binding sites. Analysis of the locations of the HSF binding sites revealed that 57% were contained within genes with approximately 2/3rds of these sites being in introns. We also found that the insulator protein, BEAF, has enriched binding prior to HS to promoters of genes that are bound by HSF upon HS but that are not transcriptionally induced during HS. When the genes associated with HSF binding sites in promoters were analyzed for gene ontology terms, categories such as stress response and transferase activity were enriched whereas analysis of genes having HSF binding sites in introns identified those categories plus ones related to developmental processes and reproduction. These results suggest that Drosophila HSF may be regulating many genes besides the known HS genes and that some of these genes may be regulated during non-stress conditions.
机译:在热休克(HS)和其他压力下,真核生物中HS基因的转录受转录因子热休克因子(HSF)上调。尽管人们已经知道了主要HS基因的身份已有30多年了,但是人们怀疑HSF可以与许多其他基因结合并可能调节其转录。在这项研究中,我们已使用染色质免疫沉淀和微阵列(ChIP芯片)方法来确定果蝇基因组中由HSF绑定的434个区域。我们还对热休克的Kc167细胞和三龄幼虫进行了转录本分析,并将其与HSF结合位点进行了比较。热诱导的转录谱在细胞和幼虫之间是完全不同的,令人惊讶的是,只有约10%的与HSF结合位点相关的基因显示出改变的转录。也有一些基因显示出转录水平的变化,这些变化似乎与HSF结合位点不相关。对HSF结合位点位置的分析表明,基因中包含57%,其中这些位点的约2/3位于内含子中。我们还发现,绝缘子蛋白BEAF在HS之前已经丰富了与HS结合的HSF结合基因的启动子的结合,而这些基因的启动子在HS期间不会被转录诱导。当分析启动子中与HSF结合位点相关的基因的基因本体论术语时,诸如应激反应和转移酶活性的类别被丰富了,而对内含子中具有HSF结合位点的基因的分析则确定了这些类别以及与发育过程和繁殖相关的类别。这些结果表明,果蝇HSF可能除了已知的HS基因外还调控许多基因,并且其中一些基因可能在非胁迫条件下受到调控。

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