Henry Y A, Chambers A, Tsang J S, Kingsman A J, Kingsman S M
Department of Biochemistry, Oxford University, UK.
Nucleic Acids Res. 1990 May 11;18(9):2617-23. doi: 10.1093/nar/18.9.2617.
The 827 amino acid yeast RAP1 protein interacts with DNA to regulate gene expression at numerous unrelated loci in the yeast genome. By a combination of amino, carboxy and internal deletions, we have defined an internal 235 amino acid fragment of the yeast RAP1 protein that can bind efficiently to the RAP1 binding site of the PGK Upstream Activation Sequence (UAS). This domain spans residues 361 to 596 of the full length protein and lacks any homology to the DNA binding 'zinc finger' or 'helix-turn-helix' structural motifs. All the RAP1 binding sites we have tested bind domain 361-596, arguing that RAP1 binds all its chromosomal sites via this domain. The domain could not be further reduced in size suggesting that it represents the minimal functional DNA binding domain. The relevance of potential regions of secondary structure within the minimal binding domain is discussed.
827个氨基酸的酵母RAP1蛋白与DNA相互作用,以调控酵母基因组中众多不相关位点的基因表达。通过氨基端、羧基端和内部缺失的组合,我们确定了酵母RAP1蛋白的一个235个氨基酸的内部片段,该片段能够有效地结合到磷酸甘油酸激酶上游激活序列(UAS)的RAP1结合位点。该结构域跨越全长蛋白的361至596位残基,与DNA结合的“锌指”或“螺旋-转角-螺旋”结构基序没有任何同源性。我们测试的所有RAP1结合位点都能结合361 - 596结构域,这表明RAP1通过该结构域结合其所有染色体位点。该结构域的大小不能再进一步缩小,这表明它代表了最小的功能性DNA结合结构域。本文还讨论了最小结合结构域内二级结构潜在区域的相关性。