Quantitative assessment of RNA-protein interactions with high-throughput sequencing-RNA affinity profiling.
Abdullah OzerJacob M TomeRobin C FriedmanDan GhebaGary P SchrothJohn T LisPublished in: Nature protocols (2015)
Because RNA-protein interactions have a central role in a wide array of biological processes, methods that enable a quantitative assessment of these interactions in a high-throughput manner are in great demand. Recently, we developed the high-throughput sequencing-RNA affinity profiling (HiTS-RAP) assay that couples sequencing on an Illumina GAIIx genome analyzer with the quantitative assessment of protein-RNA interactions. This assay is able to analyze interactions between one or possibly several proteins with millions of different RNAs in a single experiment. We have successfully used HiTS-RAP to analyze interactions of the EGFP and negative elongation factor subunit E (NELF-E) proteins with their corresponding canonical and mutant RNA aptamers. Here we provide a detailed protocol for HiTS-RAP that can be completed in about a month (8 d hands-on time). This includes the preparation and testing of recombinant proteins and DNA templates, clustering DNA templates on a flowcell, HiTS and protein binding with a GAIIx instrument, and finally data analysis. We also highlight aspects of HiTS-RAP that can be further improved and points of comparison between HiTS-RAP and two other recently developed methods, quantitative analysis of RNA on a massively parallel array (RNA-MaP) and RNA Bind-n-Seq (RBNS), for quantitative analysis of RNA-protein interactions.
Keyphrases
- nucleic acid
- high throughput
- single cell
- high throughput sequencing
- protein protein
- data analysis
- binding protein
- amino acid
- small molecule
- transcription factor
- rna seq
- circulating tumor
- single molecule
- mass spectrometry
- molecularly imprinted
- circulating tumor cells
- tandem mass spectrometry
- simultaneous determination