Xiao H, Perisic O, Lis J T
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, New York 14853.
Cell. 1991 Feb 8;64(3):585-93. doi: 10.1016/0092-8674(91)90242-q.
Drosophila heat shock factor (HSF) exists as a multimer in solution and when bound to its regulatory element (HSE). We have previously reported evidence that subunits of HSF associate to form homotrimers and that each subunit contacts a conserved 5 bp DNA sequence repeated within an HSE. Here we show that HSF binding is highly cooperative at two distinct levels: between subunits of the HSF multimer, and between multimers. The binding of HSF to one of a pair of adjacent trimeric binding sites facilitates HSF binding to the second by over 2000-fold. This cooperativity is particularly important in binding HSF at 37 degrees C, and could account for the requirement for multiple binding sites in vivo and, in part, for the differential expression of heat shock genes.
果蝇热休克因子(HSF)在溶液中以及与调控元件(热休克元件,HSE)结合时均以多聚体形式存在。我们之前曾报道过相关证据,表明HSF的亚基会结合形成同三聚体,且每个亚基都与HSE内重复的一段保守5碱基对DNA序列相接触。在此我们表明,HSF的结合在两个不同层面上具有高度协同性:在HSF多聚体的亚基之间,以及在多聚体之间。HSF与一对相邻三聚体结合位点之一的结合,会使HSF与第二个位点的结合促进超过2000倍。这种协同性在37℃下结合HSF时尤为重要,并且可以解释体内对多个结合位点的需求,以及部分解释热休克基因的差异表达。