Brazas R M, Stillman D J
Department of Cellular, Viral, and Molecular Biology, University of Utah Medical Center, Salt Lake City 84132.
Proc Natl Acad Sci U S A. 1993 Dec 1;90(23):11237-41. doi: 10.1073/pnas.90.23.11237.
SWI5 encodes a zinc-finger protein required for expression of the yeast HO gene. Using Swi5 protein that was purified from a bacterial expression system, we previously isolated a yeast factor that stimulates binding of Swi5 to the HO promoter. N-terminal amino acid sequence analysis identified the Swi5 stimulatory factor as the product of the GRF10 gene, which encodes a yeast homeodomain protein. GRF10, also known as PHO2 and BAS2, is a transcriptional activator of the PHO5 acid phosphatase gene and the HIS4 histidine biosynthesis gene. Grf10 protein purified from a bacterial expression system binds DNA cooperatively with Swi5 in vitro. Analysis of disassociation rates indicates that the Grf10-Swi5-DNA complex has a longer half-life than protein-DNA complexes that contain only Swi5 or Grf10. Finally, we show that HO expression is reduced in yeast strains containing grf10 null mutations and that full expression of a heterologous promoter containing a SWI5-dependent HO upstream activation sequence element requires GRF10.
SWI5编码酵母HO基因表达所需的一种锌指蛋白。利用从细菌表达系统中纯化的Swi5蛋白,我们之前分离出一种酵母因子,它能刺激Swi5与HO启动子的结合。N端氨基酸序列分析确定Swi5刺激因子为GRF10基因的产物,该基因编码一种酵母同源结构域蛋白。GRF10也被称为PHO2和BAS2,是PHO5酸性磷酸酶基因和HIS4组氨酸生物合成基因的转录激活因子。从细菌表达系统中纯化的Grf10蛋白在体外与Swi5协同结合DNA。解离速率分析表明,Grf10-Swi5-DNA复合物的半衰期比仅包含Swi5或Grf10的蛋白质-DNA复合物更长。最后,我们发现含有grf10无效突变的酵母菌株中HO表达降低,并且含有SWI5依赖性HO上游激活序列元件的异源启动子的完全表达需要GRF10。