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High-density functional-RNA arrays as a versatile platform for studying RNA-based interactions

机译:高密度功能性RNA阵列作为研究基于RNA相互作用的通用平台

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摘要

We are just beginning to unravel the myriad of interactions in which non-coding RNAs participate. The intricate RNA interactome is the foundation of many biological processes, including bacterial virulence and human disease, and represents unexploited resources for the development of potential therapeutic interventions. However, identifying specific associations of a given RNA from the multitude of possible binding partners within the cell requires robust high-throughput systems for their rapid screening. Here, we present the first demonstration of functional-RNA arrays as a novel platform technology designed for the study of such interactions using immobilized, active RNAs. We have generated high-density RNA arrays by an innovative method involving surface-capture of in vitro transcribed RNAs. This approach has significant advantages over existing technologies, particularly in its versatility in regards to binding partner character. Indeed, proof-of-principle application of RNA arrays to both RNA–small molecule and RNA–RNA pairings is demonstrated, highlighting their potential as a platform technology for mapping RNA-based networks and for pharmaceutical screening. Furthermore, the simplicity of the method supports greater user-accessibility over currently available technologies. We anticipate that functional-RNA arrays will find broad utility in the expanding field of RNA characterization.
机译:我们才刚刚开始揭示非编码RNA参与的无数相互作用。复杂的RNA相互作用组是许多生物过程(包括细菌毒力和人类疾病)的基础,并且代表了尚未开发的资源,可用于开发潜在的治疗性干预措施。然而,从细胞内多种可能的结合伴侣中鉴定出给定RNA的特异性结合需要强大的高通量系统来进行快速筛选。在这里,我们展示功能性RNA阵列的首次演示,该功能性RNA阵列是一种新型平台技术,旨在研究使用固定化,活性RNA的这种相互作用。我们已经通过涉及体外转录RNA表面捕获的创新方法产生了高密度RNA阵列。与现有技术相比,此方法具有显着优势,尤其是在具有约束力的伙伴特征方面的多功能性方面。实际上,已经证明了RNA阵列在RNA小分子和RNA RNA配对中的原理性应用,突显了其作为用于绘制基于RNA的网络和进行药物筛选的平台技术的潜力。此外,与当前可用技术相比,该方法的简便性支持更大的用户可访问性。我们预期功能性RNA阵列将在扩展的RNA表征领域中找到广泛的用途。

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