Wu C
Nature. 1984;311(5981):81-4. doi: 10.1038/311081a0.
DNA sequences, important for the control of Drosophila heat shock gene expression, are packaged in chromatin in a nuclease hypersensitive configuration. Recently, two protein-binding (exonuclease-resistant) sites which cover the TATA box sequence and an upstream control element were shown to occur in vivo amidst the 5' terminal hypersensitive regions of several heat shock genes. Protein-binding at the TATA box is independent of heat shock, but the binding at the upstream element is heat shock dependent, and it was proposed that a heat shock activator protein, HAP, positively regulates the genes. Here, I report the detection of HAP activity in heat shocked cell extracts by reconstituting specific binding to hsp82 gene chromatin in vitro. Inhibition of the binding by free DNA from the 5' region of heat shock genes implies a coordinate regulation of the gene family through HAP interaction with the upstream heat shock consensus sequence. Furthermore, the special ease of induction of the hsp82 gene over other heat shock genes can be explained in molecular terms by the higher affinity of HAP for the hsp82 binding site, which contains a 28 base sequence with almost perfect dyad symmetry, GAAGCCTCTAGAAG/TTTCTAGAGACTTC.
对果蝇热休克基因表达调控至关重要的DNA序列,以核酸酶超敏感的构型包装在染色质中。最近发现,在几个热休克基因的5'末端超敏感区域内,体内存在两个覆盖TATA盒序列和一个上游控制元件的蛋白质结合(抗核酸外切酶)位点。TATA盒处的蛋白质结合不依赖于热休克,但上游元件处的结合则依赖于热休克,有人提出热休克激活蛋白HAP对这些基因起正向调控作用。在此,我报告通过在体外重建与hsp82基因染色质的特异性结合,检测热休克细胞提取物中的HAP活性。热休克基因5'区域的游离DNA对结合的抑制作用表明,通过HAP与上游热休克共有序列的相互作用,对基因家族进行协调调控。此外,hsp82基因比其他热休克基因更容易被诱导,这在分子层面上可以解释为HAP对hsp82结合位点具有更高的亲和力,该位点包含一个具有几乎完美二重对称的28个碱基序列,即GAAGCCTCTAGAAG/TTTCTAGAGACTTC。