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首页> 外文期刊>Archives of Biochemistry and Biophysics >A conserved cation binding site in the DNA binding domain of forkhead box transcription factors regulates DNA binding by FOXP2
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A conserved cation binding site in the DNA binding domain of forkhead box transcription factors regulates DNA binding by FOXP2

机译:在FORKHEAD箱转录因子的DNA结合结构域中的保守阳离子结合位点调节FOXP2的DNA结合

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摘要

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 (Mg2+ or Ca2+) 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 (Mg2+ or Ca2+). 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.
机译:Foxp2是涉及人脑发展的转录阻遏物,是第一个与人类演讲的演变相关的基因产物。 Foxp2属于共同翅螺旋DNA结合结构域的蛋白质的狐狸超家族 - 叉头域。已经鉴定了二价阳离子(Mg2 +或Ca2 +)与多个狐狸叉头域晶体结构中的一组高度保守的残留物结合。这项工作旨在通过在存在和不存在任一阳离子(Mg 2 +或Ca2 +)时,研究保守二价阳离子结合位点的作用。阳离子的存在不会显着改变Apo-Foxp2叉域的结构。然而,当在存在同源寡核苷酸序列时,在添加二价阳离子时观察到差异。这些差异在结构和热力学DNA结合签名中发生,FOXP2 FORKHEAD结构域的热力学DNA结合特征。将分子动力学模拟的掺入与实验数据一起为我们提供了足够的洞察力,以提出第二价阳离子在调节与Fox转录因子的DNA结合中的可能作用。

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