Damante G, Fabbro D, Pellizzari L, Civitareale D, Guazzi S, Polycarpou-Schwartz M, Cauci S, Quadrifoglio F, Formisano S, Di Lauro R
Dipartimento di Scienze e Tecnologie Biomediche, Universita di Udine, Italy.
Nucleic Acids Res. 1994 Aug 11;22(15):3075-83. doi: 10.1093/nar/22.15.3075.
The molecular basis for the DNA binding specificity of the thyroid transcription factor 1 homeodomain (TTF-1HD) has been investigated. Methylation and ethylation interference experiments show that the TTF-1HD alone recapitulates the DNA binding properties of the entire protein. Studies carried out with mutant derivatives of TTF-1HD indicate a precise correspondence of some of its amino acid residues with specific bases in its binding site, allowing a crude orientation of the TTF-1HD within the protein-DNA complex. TTF-1HD shows an overall geometry of interaction with DNA similar to that previously observed for Antennapedia class HDs, even though the binding specificities of these two types of HDs are distinct. We demonstrate that the crucial difference between the binding sites of Antennapedia class and TTF-1 HDs is in the motifs 5'-TAAT-3', recognized by Antennapedia, and 5'-CAAG-3', preferentially bound by TTF-1. Furthermore, the binding of wild type and mutants TTF-1 HD to oligonucleotides containing either 5'-TAAT-3' or 5'-CAAG-3' indicate that only in the presence of the latter motif the Gln50 in TTF-1 HD is utilized for DNA recognition. Since the Gln at position 50 is an essential determinant for DNA binding specificity for several other HDs that bind to 5'-TAAT-3' containing sequences, we suggest that utilization by different HDs of key residues may depend on the sequence context and probably follows a precise hierarchy of contacts.
对甲状腺转录因子1同源结构域(TTF-1HD)的DNA结合特异性的分子基础进行了研究。甲基化和乙基化干扰实验表明,单独的TTF-1HD概括了整个蛋白质的DNA结合特性。对TTF-1HD突变衍生物进行的研究表明,其一些氨基酸残基与其结合位点中的特定碱基精确对应,从而使TTF-1HD在蛋白质-DNA复合物中有一个粗略的取向。TTF-1HD与DNA相互作用的整体几何形状与先前观察到的触角足类同源结构域相似,尽管这两种同源结构域的结合特异性不同。我们证明,触角足类同源结构域和TTF-1同源结构域结合位点的关键区别在于触角足类识别的基序5'-TAAT-3'和TTF-1优先结合的5'-CAAG-3'。此外,野生型和突变型TTF-1同源结构域与含有5'-TAAT-3'或5'-CAAG-3'的寡核苷酸的结合表明,只有在后一种基序存在时,TTF-1同源结构域中的Gln50才用于DNA识别。由于50位的Gln是其他几个与含有5'-TAAT-3'序列结合的同源结构域DNA结合特异性的关键决定因素,我们认为不同同源结构域对关键残基的利用可能取决于序列背景,并且可能遵循精确的接触层次。