Lou Tzu-Fang, Weidmann Chase A, Killingsworth Jordan, Tanaka Hall Traci M, Goldstrohm Aaron C, Campbell Zachary T
Department of Biological Sciences, University of Texas at Dallas, Richardson, TX 75080, United States.
Department of Biological Chemistry, University of Michigan, Ann Arbor, MI 48109, United States.
Methods. 2017 Apr 15;118-119:171-181. doi: 10.1016/j.ymeth.2016.10.001. Epub 2016 Oct 8.
RNA-binding proteins (RBPs) collaborate to control virtually every aspect of RNA function. Tremendous progress has been made in the area of global assessment of RBP specificity using next-generation sequencing approaches both in vivo and in vitro. Understanding how protein-protein interactions enable precise combinatorial regulation of RNA remains a significant problem. Addressing this challenge requires tools that can quantitatively determine the specificities of both individual proteins and multimeric complexes in an unbiased and comprehensive way. One approach utilizes in vitro selection, high-throughput sequencing, and sequence-specificity landscapes (SEQRS). We outline a SEQRS experiment focused on obtaining the specificity of a multi-protein complex between Drosophila RBPs Pumilio (Pum) and Nanos (Nos). We discuss the necessary controls in this type of experiment and examine how the resulting data can be complemented with structural and cell-based reporter assays. Additionally, SEQRS data can be integrated with functional genomics data to uncover biological function. Finally, we propose extensions of the technique that will enhance our understanding of multi-protein regulatory complexes assembled onto RNA.
RNA结合蛋白(RBPs)协同作用,几乎控制着RNA功能的方方面面。在使用下一代测序方法对体内和体外RBP特异性进行全局评估的领域已经取得了巨大进展。了解蛋白质-蛋白质相互作用如何实现对RNA的精确组合调控仍然是一个重大问题。应对这一挑战需要能够以无偏见且全面的方式定量确定单个蛋白质和多聚体复合物特异性的工具。一种方法是利用体外筛选、高通量测序和序列特异性图谱(SEQRS)。我们概述了一个SEQRS实验,重点是获得果蝇RBP pumilio(Pum)和nanos(Nos)之间多蛋白复合物的特异性。我们讨论了这类实验中必要的对照,并研究了如何用基于结构和细胞的报告分析来补充所得数据。此外,SEQRS数据可以与功能基因组学数据整合,以揭示生物学功能。最后,我们提出了该技术的扩展,这将增强我们对组装在RNA上的多蛋白调控复合物的理解。