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Transcriptional regulation and binding of heat shock factor 1 and heat shock factor 2 to 32 human heat shock genes during thermal stress and differentiation

机译:在热应激和分化过程中热激因子1和热激因子2与32种人类热激基因的转录调控和结合。

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摘要

Transcription of mammalian heat shock genes can be regulated by heat shock factors (HSF) 1 and 2. Although it has been shown previously that these factors respond to distinct stimuli, a broad analysis of the induction and function of these factors in living cells has not been performed. In our study, we assayed binding of human HSF1 and HSF2 at the promoters of 32 genes identified through LocusLink as heat shock genes in response to elevated temperature and hemin-induced differentiation in human K562 erythroleukemic cells using the chromatin immunoprecipitation technique. We also measured the induced expression of these genes under these 2 conditions. We found that 17 of the 32 genes were transcriptionally induced during heat shock, and HSF1 binding was detected at 15 of the 17 promoters. Nearly all the genes induced by heat shock were also induced to a lesser degree during hemin treatment. However, some genes were induced significantly more during hemin treatment than during heat shock. A new finding is that HSF1 and HSF2 bind to the same targets, but HSF1 binding is activated more by heat than by hemin treatment, and HSF2 binding is only activated by hemin treatment and not by heat. This technology also identified previously unknown HSF1 binding sites near genes that were previously shown to be heat inducible that may contribute to gene-specific regulation.
机译:哺乳动物热休克基因的转录可以通过热休克因子(HSF)1和2来调节。尽管以前已经证明这些因子对不同的刺激有反应,但是对这些因子在活细胞中的诱导和功能的广泛分析尚无定论。被执行。在我们的研究中,我们通过染色质免疫沉淀技术测定了人HSF1和HSF2在通过LocusLink鉴定为热休克基因的32个基因的启动子上的结合,这些基因是响应于高温和血红素诱导的人K562红白血病细胞分化的热休克基因。我们还测量了这两种条件下这些基因的诱导表达。我们发现在热激过程中32个基因中的17个是转录诱导的,并且在17个启动子中的15个中检测到HSF1结合。在血红素处理期间,几乎所有由热激诱导的基因也被诱导至较小程度。但是,与热休克相比,在血红素处理中某些基因的诱导明显更多。一个新发现是,HSF1和HSF2与相同的靶标结合,但是HSF1结合通过加热比通过血红素处理激活更多,HSF2结合仅通过血红素处理而不通过加热激活。该技术还鉴定了基因附近的先前未知的HSF1结合位点,该基因先前被证明是可热诱导的,可能有助于基因特异性调控。

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