Brindle P K, Holland J P, Willett C E, Innis M A, Holland M J
Department of Biological Chemistry, School of Medicine, University of California, Davis 95616.
Mol Cell Biol. 1990 Sep;10(9):4872-85. doi: 10.1128/mcb.10.9.4872-4885.1990.
Binding sites for three distinct proteins were mapped within the upstream activation sites (UAS) of the yeast enolase genes ENO1 and ENO2. Sequences that overlapped the UAS1 elements of both enolase genes bound a protein which was identified as the product of the RAP1 regulatory gene. Sequences within the UAS2 element of the ENO2 gene bound a second protein which corresponded to the ABFI (autonomously replicating sequence-binding factor) protein. A protein designated EBF1 (enolase-binding factor) bound to sequences which overlapped the UAS2 element in ENO1. There was a good correlation among all of the factor-binding sites and the location of sequences required for UAS activity identified by deletion mapping analysis. This observation suggested that the three factors play a role in transcriptional activation of the enolase genes. UAS elements which bound the RAP1 protein or the ABFI protein modulated glucose-dependent induction of ENO1 and ENO2 expression. The ABFI-binding site in ENO2 overlapped sequences required for UAS2 activity in wild-type strains and for repression of ENO2 expression in strains carrying a null mutation in the positive regulatory gene GCR1. These latter results showed that the ABFI protein, like the RAP1 protein, bound sequences required for positive as well as negative regulation of gene expression. These observations strongly suggest that the biological functions of the RAP1 and ABFI proteins are similar.
在酵母烯醇化酶基因ENO1和ENO2的上游激活位点(UAS)内,绘制了三种不同蛋白质的结合位点。与这两个烯醇化酶基因的UAS1元件重叠的序列结合了一种蛋白质,该蛋白质被鉴定为RAP1调控基因的产物。ENO2基因的UAS2元件内的序列结合了第二种蛋白质,该蛋白质与ABFI(自主复制序列结合因子)蛋白相对应。一种名为EBF1(烯醇化酶结合因子)的蛋白质与ENO1中与UAS2元件重叠的序列结合。通过缺失图谱分析确定的所有因子结合位点与UAS活性所需序列的位置之间存在良好的相关性。这一观察结果表明,这三种因子在烯醇化酶基因的转录激活中起作用。与RAP1蛋白或ABFI蛋白结合的UAS元件调节ENO1和ENO2表达的葡萄糖依赖性诱导。ENO2中的ABFI结合位点与野生型菌株中UAS2活性以及携带正调控基因GCR1无效突变的菌株中ENO2表达抑制所需的序列重叠。后一个结果表明,ABFI蛋白与RAP1蛋白一样,结合了基因表达正调控和负调控所需的序列。这些观察结果强烈表明,RAP1和ABFI蛋白的生物学功能相似。