Hope I A, Struhl K
Cell. 1985 Nov;43(1):177-88. doi: 10.1016/0092-8674(85)90022-4.
The yeast GCN4 gene product is necessary for the transcriptional induction of many amino acid biosynthetic genes in response to conditions of amino acid starvation. We synthesized radioactively pure GCN4 protein by in vitro translation of mRNA produced by in vitro transcription with SP6 RNA polymerase. GCN4 protein binds specifically to the 20 bp region of the HIS3 gene that is critical for transcriptional regulation in vivo and contains the TGACTC sequence common to coregulated genes. A synthetic GCN4 mutant protein lacking the 40 C-terminal amino acids fails to bind DNA; this correlates with a gcn4 mutant gene that is nonfunctional in vivo. Finally, GCN4 protein binds to the promoter regions of coordinately regulated genes, but not to analogous regions of other genes. We suggest that GCN4 protein is a specific transcription factor, and we describe a molecular model for the general control of amino acid biosynthetic genes.
酵母GCN4基因产物对于许多氨基酸生物合成基因在氨基酸饥饿条件下的转录诱导是必需的。我们通过用SP6 RNA聚合酶进行体外转录产生的mRNA的体外翻译,合成了放射性纯的GCN4蛋白。GCN4蛋白特异性结合HIS3基因的20 bp区域,该区域对于体内转录调控至关重要,并且包含共调控基因共有的TGACTC序列。一种缺少40个C末端氨基酸的合成GCN4突变蛋白无法结合DNA;这与体内无功能的gcn4突变基因相关。最后,GCN4蛋白结合到协同调控基因的启动子区域,但不结合其他基因的类似区域。我们认为GCN4蛋白是一种特异性转录因子,并描述了一个氨基酸生物合成基因总体调控的分子模型。