Protein Structure-Function Research Unit, University of the Witwatersrand, Johannesburg, Gauteng, 2050, South Africa.
Protein Structure-Function Research Unit, University of the Witwatersrand, Johannesburg, Gauteng, 2050, South Africa.
Arch Biochem Biophys. 2018 Nov 1;657:56-64. doi: 10.1016/j.abb.2018.09.009. Epub 2018 Sep 15.
FOXP2 is a transcriptional repressor involved in development of the human brain and is the first gene product to be linked to the evolution of human speech. FOXP2 belongs to the FOX superfamily of proteins that share a common winged helix DNA binding domain - the forkhead domain. A divalent cation (Mg or Ca) has been identified bound to a group of highly conserved residues in a number of FOX forkhead domain crystal structures. This work aims to investigate the role of the conserved divalent cation binding site by studying both the structure and DNA-binding function of the FOXP2 forkhead domain when in the presence and absence of either cation (Mgor Ca). The presence of the cations does not significantly alter the structure of the apo-FOXP2 forkhead domain. However, when in the presence of a cognate oligonucleotide sequence, differences are observed upon addition of divalent cation. These differences occur both in the structure and in the thermodynamic DNA binding signature of the FOXP2 forkhead domain. The incorporation of molecular dynamics simulations together with the experimental data provides us with sufficient insight so as to propose a possible role for divalent cations in the regulation of DNA binding to FOX transcription factors.
FOXP2 是一种转录抑制剂,参与人类大脑的发育,是第一个与人类语言进化相关的基因产物。FOXP2 属于 FOX 蛋白超家族,它们共享一个共同的翼状螺旋 DNA 结合域——叉头结构域。在一些 FOX 叉头结构域晶体结构中,已经鉴定出二价阳离子(Mg 或 Ca)与一组高度保守的残基结合。这项工作旨在通过研究 FOXP2 叉头域在存在和不存在任何阳离子(Mg 或 Ca)时的结构和 DNA 结合功能,来研究保守的二价阳离子结合位点的作用。阳离子的存在不会显著改变 apo-FOXP2 叉头域的结构。然而,当存在同源的寡核苷酸序列时,在添加二价阳离子后会观察到差异。这些差异既发生在 FOXP2 叉头域的结构上,也发生在其热力学 DNA 结合特征上。分子动力学模拟与实验数据的结合,为我们提供了足够的洞察力,从而可以提出二价阳离子在调节 FOX 转录因子与 DNA 结合中的可能作用。