Characterizing the interactions between RNAs and proteins in vivo is key to better understand how organisms regulate gene expression. Here, we describe a robust and quantitative protocol to measure specific RNA-protein interactions in a native context using RNA immunoprecipitation (RIP). We provide a comprehensive experimental framework to detect cotranslational interactions and detail the quantitative analysis of purified RNAs by PCR and high-throughput sequencing. Although we developed the protocol in fission yeast, it can be readily implemented in other yeast species. For complete details on the use and execution of this protocol, please refer to Toullec et al. (2021)
Genome-wide sequencing of RNA (RNA-seq) has become an inexpensive tool to gain key insights into cel...
Eukaryotic gene expression involves a complex system of checkpoints that regulate RNA biogenesis, ma...
Eukaryotic genomes encode a large number of RNA-binding proteins, which play critical roles in many ...
Characterizing the interactions between RNAs and proteins in vivo is key to better understand how or...
The crucial roles played by RNA-binding proteins in all aspects of RNA metabolism, particularly in t...
The crucial roles played by RNA-binding proteins in all aspects of RNA metabolism, particularly in t...
The crucial roles of RNA-binding proteins in all aspects of RNA metabolism, particularly in the regu...
RNA targets of multitargeted RNA-binding proteins (RBPs) can be studied by various methods including...
Large RNA-binding complexes play a central role in gene expression and orchestrate production, funct...
International audienceTranscriptional and posttranscriptional regulators play a critical role in all...
Protein-RNA interactions are emerging as an important functional element in the regulation of gene e...
International audienceTranscriptional and posttranscriptional regulators play a critical role in all...
In recent years, evidence has emerged for the existence of many diverse types of RNA, which play rol...
The molecular machinery of the cell is governed by interactions between proteins, DNA, and RNA. For ...
Large RNA-binding complexes play a central role in gene expression and orchestrate production, funct...
Genome-wide sequencing of RNA (RNA-seq) has become an inexpensive tool to gain key insights into cel...
Eukaryotic gene expression involves a complex system of checkpoints that regulate RNA biogenesis, ma...
Eukaryotic genomes encode a large number of RNA-binding proteins, which play critical roles in many ...
Characterizing the interactions between RNAs and proteins in vivo is key to better understand how or...
The crucial roles played by RNA-binding proteins in all aspects of RNA metabolism, particularly in t...
The crucial roles played by RNA-binding proteins in all aspects of RNA metabolism, particularly in t...
The crucial roles of RNA-binding proteins in all aspects of RNA metabolism, particularly in the regu...
RNA targets of multitargeted RNA-binding proteins (RBPs) can be studied by various methods including...
Large RNA-binding complexes play a central role in gene expression and orchestrate production, funct...
International audienceTranscriptional and posttranscriptional regulators play a critical role in all...
Protein-RNA interactions are emerging as an important functional element in the regulation of gene e...
International audienceTranscriptional and posttranscriptional regulators play a critical role in all...
In recent years, evidence has emerged for the existence of many diverse types of RNA, which play rol...
The molecular machinery of the cell is governed by interactions between proteins, DNA, and RNA. For ...
Large RNA-binding complexes play a central role in gene expression and orchestrate production, funct...
Genome-wide sequencing of RNA (RNA-seq) has become an inexpensive tool to gain key insights into cel...
Eukaryotic gene expression involves a complex system of checkpoints that regulate RNA biogenesis, ma...
Eukaryotic genomes encode a large number of RNA-binding proteins, which play critical roles in many ...