Rayevsky Alexey, Platonov Maxim, Hurmach Vasyl, Yakovenko Anastasia, Volochnyuk Dmitriy
Enamine Ltd., Kyiv, Ukraine.
J Cell Biochem. 2020 Dec;121(12):4922-4930. doi: 10.1002/jcb.29820. Epub 2020 Jul 6.
Spt4/Spt5 is an useful target as it is likely a transcription factor that has implications for long non-coding RNA repeats related to frontotemporal dementia (FTD) found in the C9orf72 disease pathology. Inhibitors for Spt4/Spt5 using peptides as a starting point for assays as a means for developing small molecules, which could likely lead to therapeutic development for inhibition for Spt4/Spt5 with CNS characteristics. To elucidate the specific steps of identification and modification of key interacting residues from Spt4/Spt5 complex with further effect prediction, a set of different computational methods was applied. Newly characterized, theoretically derived peptides docked on Spt4/Spt5 models, based on X-ray crystallography sources, allowed us to complete molecular dynamics simulations and docking studies for peptide libraries that give us high confident set of peptides for use to screen for Spt4/Spt5 inhibition. Several peptides with increased specificity to the Spt4/Spt5 interface were found and can be screened in cell-based assays and enzymatic assays for peptide screens that lead to small molecule campaigns. Spt4/Spt5 comprises an attractive target for neurological diseases, and applying these peptides into a screening campaign will promote the goal of therapeutic searches for FTD drug discovery.
Spt4/Spt5是一个有用的靶点,因为它可能是一种转录因子,与在C9orf72疾病病理学中发现的与额颞叶痴呆(FTD)相关的长链非编码RNA重复序列有关。以肽为起点进行检测以开发小分子的Spt4/Spt5抑制剂,这可能会导致具有中枢神经系统特征的Spt4/Spt5抑制的治疗性开发。为了阐明从Spt4/Spt5复合物中鉴定和修饰关键相互作用残基的具体步骤并进行进一步的效应预测,应用了一套不同的计算方法。基于X射线晶体学来源,新表征的、理论推导的肽对接在Spt4/Spt5模型上,使我们能够完成肽库的分子动力学模拟和对接研究,为我们提供用于筛选Spt4/Spt5抑制的高可信度肽集。发现了几种对Spt4/Spt5界面具有更高特异性的肽,可在基于细胞的检测和用于肽筛选的酶检测中进行筛选,从而开展小分子研究。Spt4/Spt5是神经疾病的一个有吸引力的靶点,将这些肽应用于筛选活动将推动FTD药物发现的治疗性研究目标。