Wright R M, Simpson S L, Lanoil B D
Webb-Waring Institute For Biomedical Research, Denver, CO, USA.
Biochem Biophys Res Commun. 1995 Nov 13;216(2):458-66. doi: 10.1006/bbrc.1995.2645.
Cytochrome c oxidase from Saccharomyces cerevisiae is subject to intricate control at the level of transcription of the various genes encoding its subunits. Expression of the subunit VI encoding gene, COX6, is glucose repressed, growth phase induced, and dependent on oxygen and heme availability. An upstream activation region for COX6, UAS6, was found to contain a glucose responsive region, a heme dependent region (HDS1), and a binding site for the transcription factor, BAF1. BAF1 was the only factor observed to form a protein complex with UAS6 in vitro. However, we found that binding of BAF1 was unaffected by oxygen or heme regulation. In the present communication, we have identified a DNA binding activity that was growth phase induced and dependent on oxygen and heme availability. This highly regulated activity was detected by its discrete binding to the heme responsive site, HDS1, in UAS6. Nonetheless, it appears to have weak DNA binding specificity.
酿酒酵母中的细胞色素c氧化酶在编码其亚基的各种基因的转录水平上受到复杂的调控。编码亚基VI的基因COX6的表达受葡萄糖抑制、生长阶段诱导,并且依赖于氧气和血红素的可用性。发现COX6的上游激活区域UAS6包含一个葡萄糖反应区域、一个血红素依赖区域(HDS1)以及转录因子BAF1的结合位点。BAF1是在体外观察到的唯一与UAS6形成蛋白质复合物的因子。然而,我们发现BAF 的结合不受氧气或血红素调节的影响。在本通讯中,我们鉴定出一种DNA结合活性,它受生长阶段诱导,并且依赖于氧气和血红素的可用性。这种高度调控的活性通过其与UAS6中血红素反应位点HDS1的离散结合而被检测到。尽管如此,它似乎具有较弱的DNA结合特异性。