School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
J Cheminform. 2011 Nov 1;3(1):49. doi: 10.1186/1758-2946-3-49.
The Elk-1 transcription factor is a member of a group of proteins called ternary complex factors, which serve as a paradigm for gene regulation in response to extracellular signals. Its deregulation has been linked to multiple human diseases including the development of tumours. The work herein aims to inform the design of potential peptidomimetic compounds that can inhibit the formation of the Elk-1 dimer, which is key to Elk-1 stability. We have conducted molecular dynamics simulations of the Elk-1 ETS domain followed by virtual screening.
We show the ETS dimerisation site undergoes conformational reorganisation at the α1β1 loop. Through exhaustive screening of di- and tri-peptide libraries against a collection of ETS domain conformations representing the dynamics of the loop, we identified a series of potential binders for the Elk-1 dimer interface. The di-peptides showed no particular preference toward the binding site; however, the tri-peptides made specific interactions with residues: Glu17, Gln18 and Arg49 that are pivotal to the dimer interface.
We have shown molecular dynamics simulations can be combined with virtual peptide screening to obtain an exhaustive docking protocol that incorporates dynamic fluctuations in a receptor. Based on our findings, we suggest experimental binding studies to be performed on the 12 SILE ranked tri-peptides as possible compounds for the design of inhibitors of Elk-1 dimerisation. It would also be reasonable to consider the score-ranked tri-peptides as a comparative test to establish whether peptide size is a determinant factor of binding to the ETS domain.
Elk-1 转录因子是一种称为三元复合物因子的蛋白质家族的成员,它是细胞外信号响应基因调控的典范。其失调与多种人类疾病有关,包括肿瘤的发生。本文旨在设计潜在的肽模拟化合物,以抑制 Elk-1 二聚体的形成,这是 Elk-1 稳定性的关键。我们对 Elk-1 ETS 结构域进行了分子动力学模拟,然后进行了虚拟筛选。
我们显示 ETS 二聚化位点在α1β1 环处经历构象重排。通过对一系列 ETS 结构域构象进行双肽和三肽文库的穷尽筛选,这些构象代表了环的动力学,我们确定了一系列潜在的 Elk-1 二聚体界面结合物。双肽对结合位点没有特别的偏好;然而,三肽与关键二聚体界面残基 Glu17、Gln18 和 Arg49 发生特异性相互作用。
我们已经表明,分子动力学模拟可以与虚拟肽筛选相结合,以获得一种全面的对接方案,该方案将受体中的动态波动纳入其中。基于我们的发现,我们建议对排名第 12 的 SILE 三肽进行实验结合研究,作为 Elk-1 二聚化抑制剂设计的可能化合物。考虑到评分排名靠前的三肽作为一种比较测试,以确定肽大小是否是结合 ETS 结构域的决定因素,这也是合理的。