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Deciphering the molecular mechanisms underlying the binding of the TWIST1/E12 complex to regulatory E-box sequences

机译:破译TWIST1 / E12复合物与调控E-box序列结合的分子机制

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摘要

The TWIST1 bHLH transcription factor controls embryonic development and cancer processes. Although molecular and genetic analyses have provided a wealth of data on the role of bHLH transcription factors, very little is known on the molecular mechanisms underlying their binding affinity to the E-box sequence of the promoter. Here, we used an in silico model of the TWIST1/E12 (TE) heterocomplex and performed molecular dynamics (MD) simulations of its binding to specific (TE-box) and modified E-box sequences. We focused on (i) active E-box and inactive E-box sequences, on (ii) modified active E-box sequences, as well as on (iii) two box sequences with modified adjacent bases the AT- and TA-boxes. Our in silico models were supported by functional in vitro binding assays. This exploration highlighted the predominant role of protein side-chain residues, close to the heart of the complex, at anchoring the dimer to DNA sequences, and unveiled a shift towards adjacent ((-1) and (-1*)) bases and conserved bases of modified E-box sequences. In conclusion, our study provides proof of the predictive value of these MD simulations, which may contribute to the characterization of specific inhibitors by docking approaches, and their use in pharmacological therapies by blocking the tumoral TWIST1/E12 function in cancers.
机译:TWIST1 bHLH转录因子控制胚胎发育和癌症过程。尽管分子和遗传分析已提供了有关bHLH转录因子作用的大量数据,但对它们与启动子E-box序列结合亲和力的分子机制了解甚少。在这里,我们使用了TWIST1 / E12(TE)异源复合物的计算机模型,并对其结合到特定(TE-box)和修饰的E-box序列进行了分子动力学(MD)模拟。我们专注于(i)激活的E-box序列和非激活的E-box序列,(ii)修改的激活的E-box序列,以及(iii)带有修饰的相邻碱基的AT-和TA-box的两个box序列。我们的计算机模拟模型得到功能性体外结合测定的支持。这项探索突出了靠近复合物心脏的蛋白质侧链残基在将二聚体锚定到DNA序列方面的主要作用,并揭示了向相邻((-1)和(-1 *))碱基的转移并保持了保守性修饰的E-box序列的碱基。总之,我们的研究提供了这些MD模拟的预测价值的证据,其可能通过对接方法有助于表征特定抑制剂,并通过阻断癌症中的肿瘤TWIST1 / E12功能将其用于药物治疗。

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