首页> 外文期刊>Nucleic Acids Research >BINDING OF HEAT SHOCK FACTOR TO AND TRANSCRIPTIONAL ACTIVATION OF HEAT SHOCK GENES IN DROSOPHILA
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BINDING OF HEAT SHOCK FACTOR TO AND TRANSCRIPTIONAL ACTIVATION OF HEAT SHOCK GENES IN DROSOPHILA

机译:果蝇热激因子的结合及热激基因的转录激活

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摘要

Heat shock factor (HSF) binds to heat shock elements (HSEs) and the binding can be highly cooperative. Here we report an analysis of binding of Drosophila HSF to both native and synthetic heat shock regulatory regions. We find that cooperative binding of HSF requires close proximity, rather than helical alignment, of HSEs. Two or more trimeric HSEs organized as contiguous 5 bp units show much higher levels of cooperativity than multiple but separated HSEs. We discuss these in vitro observations in the context of the in vivo status of heat shock genes under mild and full heat shock conditions. Finally, we show that the DNA binding and trimerization domains alone may be sufficient for the full level of binding cooperativity between HSF trimers. This last result suggests that close proximity of HSEs for cooperative binding of HSF is a result of protein-protein interactions near the point of DNA contact.
机译:热激因子(HSF)与热激元件(HSE)绑定,并且绑定可以高度协作。在这里我们报告果蝇HSF绑定到本地和合成的热休克调节区域的分析。我们发现,HSF的协同结合需要HSE的紧密接近而不是螺旋排列。组织为连续5 bp单位的两个或多个三聚体HSE显示出比多个但分开的HSE高得多的协作性。我们讨论在温和的热休克条件下热休克基因的体内状态的背景下这些体外观察。最后,我们证明了单独的DNA结合和三聚结构域可能足以满足HSF三聚体之间的完整结合合作水平。最后的结果表明,HSE与HSF的协同结合非常接近,是DNA接触点附近蛋白质相互作用的结果。

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