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The forkhead domain hinge-loop plays a pivotal role in DNA binding and transcriptional activity of FOXP2

机译:FORKHEAD域铰链圈在FOXP2的DNA结合和转录活性中起着枢转作用

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Forkhead box (FOX) proteins are a ubiquitously expressed family of transcription factors that regulate the development and differentiation of a wide range of tissues in animals. The FOXP subfamily members are the only known FOX proteins capable of forming domain-swapped forkhead domain (FHD) dimers. This is proposed to be due to an evolutionary mutation (P539A) that lies in the FHD hinge loop, a key region thought to fine-tune DNA sequence specificity in the FOX transcription factors. Considering the importance of the hinge loop in both the dimerisation mechanism of the FOXP FHD and its role in tuning DNA binding, a detailed investigation into the implications of mutations within this region could provide important insight into the evolution of the FOX family. Isothermal titration calorimetry and hydrogen exchange mass spectroscopy were used to study the thermodynamic binding signature and changes in backbone dynamics of FOXP2 FHD DNA binding. Dual luciferase reporter assays were performed to study the effect that the hinge-loop mutation has on FOXP2 transcriptional activity in vivo. We demonstrate that the change in dynamics of the hinge-loop region of FOXP2 alters the energetics and mechanism of DNA binding highlighting the critical role of hinge loop mutations in regulating DNA binding characteristics of the FOX proteins.
机译:Forkhead盒(Fox)蛋白质是一种普遍地表达的转录因子家族,调节各种组织的开发和分化。 Foxp亚家族成员是唯一能够形成结构域交换的FORKHEAD结构域(FHD)二聚体的已知的狐狸蛋白。这提出了由于位于FHD铰链环中的进化突变(p539a),该关键区域认为狐狸转录因子中的微调DNA序列特异性。考虑到铰链环在Foxp FHD的二聚化机制中的重要性及其在调整DNA结合中的作用,对该地区突变的影响的详细调查可以为狐狸家族的演变提供重要的洞察。等温滴定热量法和氢交换质谱用于研究FoxP2 FHD DNA结合的热力学结合签名和骨干动力学的变化。进行双荧光素酶报告器测定以研究铰链环突变对体内FoxP2转录活性的影响。我们证明Foxp2的铰链环区域的动态变化改变了DNA结合的能量和机制,突出了铰链环突变在调节狐狸蛋白的DNA结合特征中的关键作用。

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