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通过单分子荧光共振能量转移分析对与IsdA结合的适体进行计算生成和表征。

Computational generation and characterization of IsdA-binding aptamers with single-molecule FRET analysis.

作者信息

Sabbih Godfred O, Wijesinghe Kalani M, Algama Chamika, Dhakal Soma, Danquah Michael K

机构信息

University of Tennessee, Chattanooga, Tennessee, USA.

Virginia Commonwealth University, Richmond, Virginia, USA.

出版信息

Biotechnol J. 2023 Dec;18(12):e2300076. doi: 10.1002/biot.202300076. Epub 2023 Sep 8.

Abstract

Staphylococcus aureus is a major foodborne bacterial pathogen. Early detection of S. aureus is crucial to prevent infections and ensure food quality. The iron-regulated surface determinant protein A (IsdA) of S. aureus is a unique surface protein necessary for sourcing vital iron from host cells for the survival and colonization of the bacteria. The function, structure, and location of the IsdA protein make it an important protein for biosensing applications relating to the pathogen. Here, we report an in-silico approach to develop and validate high-affinity binding aptamers for the IsdA protein detection using custom-designed in-silico tools and single-molecule Fluorescence Resonance Energy Transfer (smFRET) measurements. We utilized in-silico oligonucleotide screening methods and metadynamics-based methods to generate 10 aptamer candidates and characterized them based on the Dissociation Free Energy (DFE) of the IsdA-aptamer complexes. Three of the aptamer candidates were shortlisted for smFRET experimental analysis of binding properties. Limits of detection in the low picomolar range were observed for the aptamers, and the results correlated well with the DFE calculations, indicating the potential of the in-silico approach to support aptamer discovery. This study showcases a computational SELEX method in combination with single-molecule binding studies deciphering effective aptamers against S. aureus IsdA, protein. The established approach demonstrates the ability to expedite aptamer discovery that has the potential to cut costs and predict binding efficacy. The application can be extended to designing aptamers for various protein targets, enhancing molecular recognition, and facilitating the development of high-affinity aptamers for multiple uses.

摘要

金黄色葡萄球菌是一种主要的食源性病原体。早期检测金黄色葡萄球菌对于预防感染和确保食品质量至关重要。金黄色葡萄球菌的铁调节表面决定簇蛋白A(IsdA)是一种独特的表面蛋白,对于从宿主细胞获取维持细菌生存和定殖所需的重要铁元素必不可少。IsdA蛋白的功能、结构和位置使其成为与该病原体相关的生物传感应用中的一种重要蛋白。在此,我们报告一种基于计算机模拟的方法,使用定制设计的计算机模拟工具和单分子荧光共振能量转移(smFRET)测量来开发和验证用于检测IsdA蛋白的高亲和力结合适体。我们利用计算机模拟的寡核苷酸筛选方法和基于元动力学的方法生成了10个适体候选物,并根据IsdA-适体复合物的解离自由能(DFE)对它们进行了表征。其中三个适体候选物被选出来用于结合特性的smFRET实验分析。观察到这些适体在低皮摩尔范围内的检测限,并且结果与DFE计算结果高度相关,表明基于计算机模拟的方法在支持适体发现方面的潜力。本研究展示了一种结合单分子结合研究的计算性指数富集配体系统进化(SELEX)方法,用于解析针对金黄色葡萄球菌IsdA蛋白的有效适体。所建立的方法证明了加快适体发现的能力,这有可能降低成本并预测结合效力。该应用可以扩展到为各种蛋白质靶点设计适体,增强分子识别,并促进多种用途的高亲和力适体的开发。

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