Hu C H, Wang J M, Tseng H B
Institute of Marine Biotechnology, National Taiwan Ocean University, 2 Pei-Ning Road, Keelung, 20224, Taiwan, Republic of China.
Biochem J. 1998 Jul 1;333 ( Pt 1)(Pt 1):51-6. doi: 10.1042/bj3330051.
Upstream binding factor (UBF) is a eukaryotic RNA polymerase I-specific transcription factor. Its predominant DNA-binding motif, ubfHMG box 1, preserves DNA assembling activity that can bind two or more DNA duplexes simultaneously to form a crossover DNA junction. Here we investigate the basis of crossover DNA-assembling activity of ubfHMG box 1 by extensive mutagenesis analyses and mobility shift assay. Although the ubfHMG box 1 preserves a high mobility group (HMG) core structure, changing a number of the consensus hydrophobic and aromatic residues to alanine did not inhibit its crossover-assembling activity. This indicates that these residues do not directly participate in protein-DNA interaction. However, altering a series of basic residues in the helices 1 and 2 regions or the N-terminal extended strand of the ubfHMG box 1 motif had severe effects on DNA-assembling activity; however, certain non-specific DNA binding activity still remained. This suggests that the ubfHMG box 1 motif might extensively contact the backbone of a crossover junction through its multiple basic residues. Mutating a hydrophobic residue in the terminal dimerization domain inhibited the association of truncated Xenopus UBF, but had little effect on its crossover-assembling activity. This indicates that the UBF-crossover DNA complex is not established by the association of individual DNA-bound peptides.
上游结合因子(UBF)是一种真核生物RNA聚合酶I特异性转录因子。其主要的DNA结合基序ubfHMG框1保留了DNA组装活性,能够同时结合两条或更多条DNA双链体,形成交叉DNA连接。在此,我们通过广泛的诱变分析和迁移率变动分析,研究ubfHMG框1交叉DNA组装活性的基础。尽管ubfHMG框1保留了高迁移率族(HMG)核心结构,但将许多保守的疏水和芳香族残基替换为丙氨酸并不抑制其交叉组装活性。这表明这些残基并不直接参与蛋白质-DNA相互作用。然而,改变ubfHMG框1基序的螺旋1和2区域或N端延伸链中的一系列碱性残基,对DNA组装活性有严重影响;不过,仍保留一定的非特异性DNA结合活性。这表明ubfHMG框1基序可能通过其多个碱性残基与交叉连接的骨架广泛接触。突变末端二聚化结构域中的一个疏水残基会抑制截短的非洲爪蟾UBF的缔合,但对其交叉组装活性影响不大。这表明UBF-交叉DNA复合物不是由单个结合DNA的肽段缔合形成的。