Cho G, Kim J, Rho H M, Jung G
Department of Biology Education, Seoul National University, Korea.
Nucleic Acids Res. 1995 Aug 11;23(15):2980-7. doi: 10.1093/nar/23.15.2980.
To localize the DNA binding domain of the Saccharomyces cerevisiae Ars binding factor 1 (ABF1), a multifunctional DNA binding protein, plasmid constructs carrying point mutations and internal deletions in the ABF1 gene were generated and expressed in Escherichia coli. Normal and mutant ABF1 proteins were purified by affinity chromatography and their DNA binding activities were analyzed. The substitution of His61, Cys66 and His67 respectively, located in the zinc finger motif in the N-terminal region (amino acids 40-91), eliminated the DNA binding activity of ABF1 protein. Point mutations in the middle region of ABF1, specifically at Leu353, Leu399, Tyr403, Gly404, Phe410 and Lys434, also eliminated or reduced DNA binding activity. However, the DNA binding activity of point mutants of Ser307, Ser496 and Glu649 was the same as that of wild-type ABF1 protein and deletion mutants of amino acids 200-265, between the zinc finger region and the middle region (residues 323-496) retained DNA binding activity. As a result, we confirmed that the DNA binding domain of ABF1 appears to be bipartite and another DNA binding motif, other than the zinc finger motif, is situated between amino acid residues 323 and 496.
为了定位酿酒酵母抗砷结合因子1(ABF1,一种多功能DNA结合蛋白)的DNA结合结构域,构建了携带ABF1基因点突变和内部缺失的质粒,并在大肠杆菌中表达。通过亲和层析法纯化正常和突变型ABF1蛋白,并分析它们的DNA结合活性。分别替换位于N端区域(氨基酸40 - 91)锌指基序中的His61、Cys66和His67,消除了ABF1蛋白的DNA结合活性。ABF1中间区域的点突变,特别是Leu353、Leu399、Tyr403、Gly404、Phe410和Lys434处的突变,也消除或降低了DNA结合活性。然而,Ser307、Ser496和Glu649点突变体的DNA结合活性与野生型ABF1蛋白相同,并且锌指区域和中间区域(残基323 - 496)之间氨基酸200 - 265的缺失突变体保留了DNA结合活性。因此,我们证实ABF1的DNA结合结构域似乎是二分的,并且除锌指基序外的另一个DNA结合基序位于氨基酸残基323和496之间。