Bhoite Leena T, Allen Jason M, Garcia Emily, Thomas Lance R, Gregory I David, Voth Warren P, Whelihan Kristen, Rolfes Ronda J, Stillman David J
Department of Pathology, University of Utah Health Sciences Center, Salt Lake City, Utah 84132, USA.
J Biol Chem. 2002 Oct 4;277(40):37612-8. doi: 10.1074/jbc.M206125200. Epub 2002 Jul 26.
The yeast PHO2 gene encodes a homeodomain protein that exemplifies combinatorial control in transcriptional activation. Pho2 alone binds DNA in vitro with low affinity, but in vivo it activates transcription with at least three disparate DNA-binding proteins: the zinc finger protein Swi5, the helix-loop-helix factor Pho4, and Bas1, an myb-like activator. Pho2 + Swi5 activates HO, Pho2 + Pho4 activates PHO5, and Pho2 + Bas1 activates genes in the purine and histidine biosynthesis pathways. We have conducted a genetic screen and identified 23 single amino acid substitutions in Pho2 that differentially affect its ability to activate its specific target genes. Analysis of the mutations suggests that the central portion of Pho2 serves as protein-protein interactive surface, with a requirement for distinct amino acids for each partner protein.
酵母PHO2基因编码一种同源结构域蛋白,它是转录激活中组合调控的一个例证。单独的Pho2在体外与DNA结合的亲和力较低,但在体内它与至少三种不同的DNA结合蛋白一起激活转录:锌指蛋白Swi5、螺旋-环-螺旋因子Pho4和类myb激活因子Bas1。Pho2 + Swi5激活HO,Pho2 + Pho4激活PHO5,Pho2 + Bas1激活嘌呤和组氨酸生物合成途径中的基因。我们进行了一项遗传筛选,在Pho2中鉴定出23个单氨基酸替换,这些替换对其激活特定靶基因的能力有不同影响。对这些突变的分析表明,Pho2的中央部分作为蛋白质-蛋白质相互作用表面,对每个伙伴蛋白需要不同的氨基酸。