Zhang L, Guarente L
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
J Biol Chem. 1994 May 20;269(20):14643-7.
The activity of the yeast transcription activator HAP1 is controlled by heme. Previously, it has been shown that a heme-responsive domain containing multiple repeats of a conserved motif blocks DNA binding in the absence of heme. In this report, we show that HAP1 is sequestered in a high molecular weight complex in the absence of heme. Titration of the high molecular weight complex by addition of a non-DNA-binding form of HAP1 allows the protein to form dimeric complexes in the absence of heme in vitro and acquires partial transcriptional activity in vivo. The results indicate that one or more cellular factor(s) complexes with HAP1 and represses its activity in the absence of heme. Deletion of the heme domain prevents sequestration of HAP1 in the high molecular weight complex. We discuss these findings in a model that postulates that the heme domain of HAP1 can interact with other cellular factors to regulate HAP1.
酵母转录激活因子HAP1的活性受血红素调控。此前研究表明,一个含有保守基序多个重复序列的血红素响应结构域在无血红素时会阻断DNA结合。在本报告中,我们发现无血红素时HAP1被隔离在高分子量复合物中。通过添加非DNA结合形式的HAP1对高分子量复合物进行滴定,可使该蛋白在无血红素的体外条件下形成二聚体复合物,并在体内获得部分转录活性。结果表明,一种或多种细胞因子与HAP1结合,并在无血红素时抑制其活性。血红素结构域的缺失可防止HAP1被隔离在高分子量复合物中。我们在一个假设HAP1的血红素结构域可与其他细胞因子相互作用以调节HAP1的模型中讨论了这些发现。