Center for RNA Science and Therapeutics, School of Medicine, Case Western Reserve University, Cleveland, OH, USA.
Department of Biochemistry, School of Medicine, Case Western Reserve University, Cleveland, OH, USA.
Nature. 2021 Mar;591(7848):152-156. doi: 10.1038/s41586-021-03222-x. Epub 2021 Feb 10.
Gene expression in higher eukaryotic cells orchestrates interactions between thousands of RNA-binding proteins (RBPs) and tens of thousands of RNAs. The kinetics by which RBPs bind to and dissociate from their RNA sites are critical for the coordination of cellular RNA-protein interactions. However, these kinetic parameters have not been experimentally measured in cells. Here we show that time-resolved RNA-protein cross-linking with a pulsed femtosecond ultraviolet laser, followed by immunoprecipitation and high-throughput sequencing, allows the determination of binding and dissociation kinetics of the RBP DAZL for thousands of individual RNA-binding sites in cells. This kinetic cross-linking and immunoprecipitation (KIN-CLIP) approach reveals that DAZL resides at individual binding sites for time periods of only seconds or shorter, whereas the binding sites remain DAZL-free for markedly longer. The data also indicate that DAZL binds to many RNAs in clusters of multiple proximal sites. The effect of DAZL on mRNA levels and ribosome association correlates with the cumulative probability of DAZL binding in these clusters. Integrating kinetic data with mRNA features quantitatively connects DAZL-RNA binding to DAZL function. Our results show how kinetic parameters for RNA-protein interactions can be measured in cells, and how these data link RBP-RNA binding to the cellular function of RBPs.
高等真核细胞中的基因表达协调着数千种 RNA 结合蛋白 (RBPs) 和数万种 RNA 之间的相互作用。RBPs 与 RNA 结合位点结合和解离的动力学对于协调细胞中 RNA-蛋白相互作用至关重要。然而,这些动力学参数尚未在细胞中进行实验测量。在这里,我们展示了使用脉冲飞秒紫外激光进行的时分辨的 RNA-蛋白交联,随后进行免疫沉淀和高通量测序,从而可以确定 RBP DAZL 与细胞中数千个单个 RNA 结合位点的结合和解离动力学。这种动力学交联和免疫沉淀 (KIN-CLIP) 方法表明,DAZL 在单个结合位点上的停留时间仅为几秒钟或更短,而结合位点在明显更长的时间内保持无 DAZL 状态。数据还表明,DAZL 以多个近端结合位点簇的形式与许多 RNA 结合。DAZL 对 mRNA 水平和核糖体结合的影响与这些簇中 DAZL 结合的累积概率相关。将动力学数据与 mRNA 特征相结合,定量地将 DAZL-RNA 结合与 DAZL 的细胞功能联系起来。我们的结果表明了如何在细胞中测量 RNA-蛋白相互作用的动力学参数,以及如何将 RBP-RNA 结合与 RBPs 的细胞功能联系起来。