Protein Structure-Function Unit, School of molecular and Cell Biology, University of the Witwatersrand, Jan Smuts Ave, Braamfontein, 2050 Johannesburg, Gauteng, South Africa.
CSIR Biosciences, CSIR, Meiring Naude Road, Brummeria, 0001 Pretoria, Gauteng, South Africa.
Biosci Rep. 2023 Oct 31;43(10). doi: 10.1042/BSR20231295.
YY1 is a ubiquitously expressed, intrinsically disordered transcription factor involved in neural development. The oligomeric state of YY1 varies depending on the environment. These structural changes may alter its DNA binding ability and hence its transcriptional activity. Just as YY1's oligomeric state can impact its role in transcription, so does its interaction with other proteins such as FOXP2. The aim of this work is to study the structure and dynamics of YY1 so as to determine the influence of oligomerisation and associations with FOXP2 on its DNA binding mechanism. The results confirm that YY1 is primarily a disordered protein, but it does consist of certain specific structured regions. We observed that YY1 quaternary structure is a heterogenous mixture of oligomers, the overall size of which is dependent on ionic strength. Both YY1 oligomerisation and its dynamic behaviour are further subject to changes upon DNA binding, whereby increases in DNA concentration result in a decrease in the size of YY1 oligomers. YY1 and the FOXP2 forkhead domain were found to interact with each other both in isolation and in the presence of YY1-specific DNA. The heterogeneous, dynamic multimerisation of YY1 identified in this work is, therefore likely to be important for its ability to make heterologous associations with other proteins such as FOXP2. The interactions that YY1 makes with itself, FOXP2 and DNA form part of an intricate mechanism of transcriptional regulation by YY1, which is vital for appropriate neural development.
YY1 是一种普遍表达的、内在无序的转录因子,参与神经发育。YY1 的寡聚状态取决于环境。这些结构变化可能会改变其 DNA 结合能力,从而影响其转录活性。正如 YY1 的寡聚状态会影响其在转录中的作用一样,它与其他蛋白质(如 FOXP2)的相互作用也是如此。本工作的目的是研究 YY1 的结构和动力学,以确定寡聚化和与 FOXP2 的相互作用对其 DNA 结合机制的影响。结果证实,YY1 主要是一种无序蛋白,但它确实包含某些特定的结构区域。我们观察到,YY1 的四级结构是寡聚物的异质混合物,其整体大小取决于离子强度。YY1 的寡聚化及其动态行为都受到 DNA 结合的影响,随着 DNA 浓度的增加,YY1 寡聚物的大小会减小。YY1 和 FOXP2 叉头结构域被发现无论是在单独存在还是在存在 YY1 特异性 DNA 的情况下都能相互作用。因此,在这项工作中鉴定的 YY1 的异质、动态多聚化可能对其与其他蛋白质(如 FOXP2)形成异源复合物的能力很重要。YY1 与自身、FOXP2 和 DNA 的相互作用形成了 YY1 转录调控的复杂机制的一部分,这对适当的神经发育至关重要。