针对埃博拉病毒核蛋白的 SELEX 衍生高亲和性 DNA 嵌合体的分子建模和模拟研究。

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
D R Martin, A T Mutombwera, A M Madiehe, M O Onani, M Meyer, R Cloete
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引用次数: 0

摘要

埃博拉病毒病(EVD)是一种传染性极强的潜在致命疾病,病死率从 25% 到 90% 不等。为有效控制其传播,需要快速、可靠和低成本的护理点(P OC)诊断测试。虽然目前有各种 EVD 诊断检测方法,但很少有 P OC 检测方法,而且许多检测方法的成本效益不高。在这些检测中使用抗体有其局限性,这促使人们探索将适配体作为潜在的替代品。埃博拉病毒(EBOV)蛋白质组中的各种蛋白质,包括埃博拉病毒核蛋白(NP),被认为是诊断检测的可行靶标。之前的一项研究利用指数富集配体的系统进化(SELEX)方法发现了三种与 EBOV 核蛋白具有高亲和力的适配体(Apt1、Apt2 和 Apt3)。本研究旨在采用 Phyre2、RNAfold、RNAComposer、HADDOCK 和 GROMACS 等硅学方法来模拟 EBOV NP 和适配体的结构,并研究它们之间的结合。硅学分析表明,所有三种适配体都能成功地与 EBOV NP 结合,根据结合亲和力,建议排序为 Apt1 > Apt2 > Apt3。微尺度热泳(MST)分析证实了这种结合,Apt1、Apt2 和 Apt3 的解离常数分别为 25 ± 2.84、56 ± 2.76 和 140 ± 3.69 nM。研究表明,硅学分析结果与 MST 分析结果一致。在诊断分析开发中采用这些硅学方法可以加快候选适配体的筛选,从而有可能克服与适配体在诊断中的应用相关的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular modeling and simulation studies of SELEX-derived high-affinity DNA aptamers to the Ebola virus nucleoprotein.

Ebola viral disease (EVD) is a highly infectious and potentially fatal illness with a case fatality rate ranging from 25% to 90%. To effectively control its spread, there is a need for rapid, reliable and lowcost point-of-care (P OC) diagnostic tests. While various EVD diagnostic tests exist, few are P OC tests, and many are not cost-effective. The use of antibodies in these tests has limitations, prompting the exploration of aptamers as potential alternatives. Various proteins from the Ebola virus (EBOV) proteome, including EBOV nucleoprotein (NP), are considered viable targets for diagnostic assays. A previous study identified three aptamers (Apt1. Apt2 and Apt3) with high affinity for EBOV NP using systemic evolution of ligands by exponential enrichment (SELEX). This study aimed to employ in silico methods, such as Phyre2, RNAfold, RNAComposer, HADDOCK and GROMACS, to model the structures of EBOV NP and the aptamers, and to investigate their binding. The in silico analysis revealed successful binding of all the three aptamers to EBOV NP, with a suggested ranking of Apt1 > Apt2 > Apt3 based on binding affinity. Microscale thermophoresis (MST) analysis confirmed the binding, providing dissociation constants of 25 ± 2.84, 56 ± 2.76 and 140 ±3.69 nM for Apt1, Apt2 and Apt3, respectively. The study shows that the findings of the in silico analysis was in agreement with the MST analysis. Inclusion of these in silico approaches in diagnostic assay development can expedite the selection of candidate aptamers, potentially overcoming challenges associated with aptamer application in diagnostics.

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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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