Department of Chemistry, University of California Davis, Davis, California, United States of America.
PLoS One. 2011;6(8):e23069. doi: 10.1371/journal.pone.0023069. Epub 2011 Aug 1.
The homeobox gene (HOXA13) codes for a transcription factor protein that binds to AT-rich DNA sequences and controls expression of genes during embryonic morphogenesis. Here we present the NMR structure of HOXA13 homeodomain (A13DBD) bound to an 11-mer DNA duplex. A13DBD forms a dimer that binds to DNA with a dissociation constant of 7.5 nM. The A13DBD/DNA complex has a molar mass of 35 kDa consistent with two molecules of DNA bound at both ends of the A13DBD dimer. A13DBD contains an N-terminal arm (residues 324 - 329) that binds in the DNA minor groove, and a C-terminal helix (residues 362 - 382) that contacts the ATAA nucleotide sequence in the major groove. The N370 side-chain forms hydrogen bonds with the purine base of A5* (base paired with T5). Side-chain methyl groups of V373 form hydrophobic contacts with the pyrimidine methyl groups of T5, T6* and T7*, responsible for recognition of TAA in the DNA core. I366 makes similar methyl contacts with T3* and T4*. Mutants (I366A, N370A and V373G) all have decreased DNA binding and transcriptional activity. Exposed protein residues (R337, K343, and F344) make intermolecular contacts at the protein dimer interface. The mutation F344A weakens protein dimerization and lowers transcriptional activity by 76%. We conclude that the non-conserved residue, V373 is critical for structurally recognizing TAA in the major groove, and that HOXA13 dimerization is required to activate transcription of target genes.
同源盒基因(HOXA13)编码一种转录因子蛋白,该蛋白能与富含 AT 的 DNA 序列结合,并在胚胎形态发生过程中控制基因的表达。本文呈现了 HOXA13 同源结构域(A13DBD)与 11 -mer DNA 双链复合物的 NMR 结构。A13DBD 形成二聚体,与 DNA 的解离常数为 7.5 nM。A13DBD/DNA 复合物的摩尔质量为 35 kDa,与二聚体两端结合的两个 DNA 分子一致。A13DBD 包含一个 N 端臂(残基 324-329),结合在 DNA 的小沟中,以及一个 C 端螺旋(残基 362-382),与 DNA 大沟中的 ATAA 核苷酸序列结合。N370 侧链与 A5*(与 T5 配对的嘌呤碱基)形成氢键。V373 的侧链甲基与 T5、T6和 T7的嘧啶甲基形成疏水接触,负责识别 DNA 核心中的 TAA。I366 与 T3和 T4也有类似的甲基接触。突变体(I366A、N370A 和 V373G)的 DNA 结合和转录活性均降低。暴露的蛋白质残基(R337、K343 和 F344)在蛋白质二聚体界面上形成分子间接触。突变 F344A 削弱了蛋白质二聚化,使转录活性降低 76%。我们得出结论,非保守残基 V373 对于在大沟中结构识别 TAA 至关重要,并且 HOXA13 二聚化是激活靶基因转录所必需的。