Kristofich JohnCarlo, Nicchitta Christopher V
Department of Cell Biology, Duke University School of Medicine, Durham, NC, USA.
Bio Protoc. 2024 Jul 20;14(14):e5236. doi: 10.21769/BioProtoc.5236.
The critical roles of RNA-binding proteins (RBPs) in all aspects of RNA biology fostered the development of methods utilizing ultraviolet (UV) crosslinking and method-specific RNA enrichment steps for proteome-wide identification and assessment of RBP function. Despite the substantial contributions of these UV-based RNA-centric methods to our understanding of RNA-protein interaction networks, their utility is constrained by biases in RBP recovery and significant noise contributions, which can confound meaningful interpretation. To overcome these issues, we recently developed a method termed Liquid Emulsion-Assisted Purification of RNA-Bound Protein (LEAP-RBP) and introduced quantitative signal-to-noise (:)-based metrics for the proteome-wide identification of RNA interactomes and accurate assessment of global RBP occupancy dynamics. Compared to existing methodologies, LEAP-RBP provides significant advantages in speed, cost, efficiency, and selectivity for RNA-bound proteins. In this work, we provide a step-by-step guide for the successful application of the LEAP-RBP method for both small- and large-scale investigations of RNA-bound proteomes. Key features • Unbiased and efficient isolation of total RNA-bound protein, RNA, and protein from biological samples. • Cost-effective identification of proteome-wide RNA interactomes and validation of direct RNA-binding protein functionality. • Robust and accurate assessment of context- and/or condition-dependent RBP occupancy state dynamics.
RNA结合蛋白(RBPs)在RNA生物学的各个方面都发挥着关键作用,这推动了利用紫外线(UV)交联和特定方法的RNA富集步骤来进行全蛋白质组范围内RBPs功能鉴定和评估的方法的发展。尽管这些基于紫外线的以RNA为中心的方法对我们理解RNA-蛋白质相互作用网络做出了重大贡献,但其效用受到RBP回收偏差和大量噪声贡献的限制,这可能会混淆有意义的解释。为了克服这些问题,我们最近开发了一种称为液滴乳液辅助RNA结合蛋白纯化(LEAP-RBP)的方法,并引入了基于定量信噪比(S/N)的指标,用于全蛋白质组范围内RNA相互作用组的鉴定和对全局RBP占据动态的准确评估。与现有方法相比,LEAP-RBP在结合RNA的蛋白质的速度、成本、效率和选择性方面具有显著优势。在这项工作中,我们为LEAP-RBP方法在小规模和大规模RNA结合蛋白质组研究中的成功应用提供了一份详细的操作指南。关键特性:
• 从生物样品中无偏差且高效地分离总RNA结合蛋白、RNA和蛋白质。
• 经济高效地鉴定全蛋白质组范围内的RNA相互作用组,并验证直接RNA结合蛋白的功能。
• 稳健且准确地评估与背景和/或条件相关的RBP占据状态动态。