Damante G, Pellizzari L, Esposito G, Fogolari F, Viglino P, Fabbro D, Tell G, Formisano S, Di Lauro R
Dipartimento di Scienze e Tecnologie Biomediche, Università di Udine, Italy.
EMBO J. 1996 Sep 16;15(18):4992-5000.
Most homeodomains bind to DNA sequences containing the motif 5'-TAAT-3'. The homeodomain of thyroid transcription factor 1 (TTF-1HD) binds to sequences containing a 5'-CAAG-3' core motif, delineating a new mechanism for differential DNA recognition by homeodomains. We investigated the molecular basis of the DNA binding specificity of TTF-1HD by both structural and functional approaches. As already suggested by the three-dimensional structure of TTF-1HD, the DNA binding specificities of the TTF-1, Antennapedia and Engrailed homeodomains, either wild-type or mutants, indicated that the amino acid residue in position 54 is involved in the recognition of the nucleotide at the 3' end of the core motif 5'-NAAN-3'. The nucleotide at the 5' position of this core sequence is recognized by the amino acids located in position 6, 7 and 8 of the TTF-1 and Antennapedia homeodomains. These data, together with previous suggestions on the role of amino acids in position 50, indicate that the DNA binding specificity of homeodomains can be determined by a combinatorial molecular code. We also show that some specific combinations of the key amino acid residues involved in DNA recognition do not follow a simple, additive rule.
大多数同源结构域与包含基序5'-TAAT-3'的DNA序列结合。甲状腺转录因子1的同源结构域(TTF-1HD)与包含5'-CAAG-3'核心基序的序列结合,揭示了同源结构域识别DNA差异的新机制。我们通过结构和功能方法研究了TTF-1HD DNA结合特异性的分子基础。正如TTF-1HD的三维结构所表明的那样,野生型或突变型的TTF-1、触角足蛋白和成对控制基因同源结构域的DNA结合特异性表明,第54位的氨基酸残基参与了对核心基序5'-NAAN-3' 3'端核苷酸的识别。该核心序列5'位置的核苷酸由TTF-1和触角足蛋白同源结构域第6、7和8位的氨基酸识别。这些数据,连同先前关于第50位氨基酸作用的推测,表明同源结构域的DNA结合特异性可由组合分子密码决定。我们还表明,参与DNA识别的关键氨基酸残基的一些特定组合并不遵循简单的加法规则。