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GSE240325

GSE GEO
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An in situ method for identification of transcriptome-wide protein-RNA interactions in cells [in_situ_STAMP - Long-Read]"

Organism: Homo sapiens
Platform: GPL28352
Samples: 2
Experiment Types:
Other
Submitted: Aug 08 2023
Last Updated: Sep 27 2024
Status: Public on Jun 13 2024
Contact: Brian,,Yee (UCSD)

Relations

SubSeries of: GSE240326 BioProject: https://www.ncbi.nlm.nih.gov/bioproject/PRJNA1003312

Summary

RNA-binding proteins (RBPs) play important roles in RNA metabolism including splicing, stability, localization, and translation. RBP-RNA interaction profiles are indicative of many diseases. Existing methods for mapping RBP-RNA interactions transcriptome-wide have notable limitations: immunoprecipitation (IP)-based technologies require large quantities of input materials, and RNA shearing during processing prevents identification of RNA isoforms. Meanwhile, profiling methods using RNA-modifying enzymes require ectopic expression of fusion proteins in cells of interest, potentially distorting interaction profiles. Here we report in situ STAMP, an RBP-RNA profiling method that overcomes the limitations of existing methods. In situ STAMP utilizes a chimeric fusion of the cytosine deaminase APOBEC1 and an IgG-targeting single-domain antibody (nanobody). We demonstrate that this fusion protein can be specifically targeted to proteins of interest including the RBPs RBFOX2 and TDP-43 when combined with primary antibodies targeting these proteins, enabling identification of their binding sites in un-engineered HEK293T cells. The canonical binding motifs of both RBFOX2 (UGCAUG) and TDP43 (UGUGUG) could be identified by de novo motif analysis from in situ STAMP data, demonstrating the method’s high specificity. In situ STAMP preserves intact RNAs and is therefore compatible with direct cDNA PacBio long-read sequencing, enabling the method to distinguish between RNA isoforms. Importantly, in situ STAMP is compatible with multiple fixation methods including methanol and formaldehyde fixation, enabling its application to tissue samples collected in research or clinical settings. Thus, in situ STAMP enables the profiling of authentic RBP-RNA interactions using small quantities of primary cells or tissues, thereby bridging a critical gap in uncovering the roles of RBPs in RNA-related disease mechanisms in authentic biological contexts.

Overall Design

in situ STAMP (C-to-U RNA editing) in fixed cells and mouse brain tissue

Analysis (7 steps)

View Data Processing
Processing steps for GSE240325
  1. Demultiplex primers with lima (v2.6.0)
  2. Refine reads with Isoseq3 refine (v3.8.0)
  3. Align reads using pbmm2 (v1.9.0)
  4. Cluster reads with isoseq3 cluster (v3.8.0)
  5. Filter for primary mapped reads with custom script
  6. Identify gene editing using custom script
  7. remove edits found in annotated SNP positions using custom script

Supplementary Files (2)

GSE240325_RAW.tar Download
GSE240325_apo_rbfox_insitu_clustered.sorted.filtered_lite.gff.gz Download
GEO Samples (2)

Dataset Citations (1)

High-sensitivity in situ capture of endogenous RNA-protein interactions in fixed cells and primary tissues.
PMID 39152130 · 2024 · Nature communications
Qishan Liang, Tao Yu, Eric Kofman, Pratibha Jagannatha, Kevin Rhine, Brian A Yee, Kevin D Corbett, Gene W Yeo

SRA Experiments (2) and Runs (2)

Total: 14405 MB
SRX21296348 SRP453963 RNA-Seq SINGLE
GSM7696205: HEK293T_APO_STAMP; Homo sapiens; RNA-Seq
Sample: SRS18545636
BioProject: PRJNA1003312
BioSample: SAMN36887272
Platform: PACBIO_SMRT
Instrument: Sequel II
Organism: Homo sapiens
Sample attributes
source_name: Kidney
tissue: Kidney
cell line: HEK293XT
cell type: immortalized cell line
replicate: 1
geo_loc_name: missing
collection_date: missing
Original files (1)
Kidney
Runs (1)
Run Spots Bases Size (MB) Files Link
SRR25567594 6003694 22278369378 6813.32 m64278e_230504_212705.reads.bam, SRR25567594 SRA
SRX21296349 SRP453963 RNA-Seq SINGLE
GSM7696206: HEK293T_RBFOX_STAMP; Homo sapiens; RNA-Seq
Sample: SRS18545637
BioProject: PRJNA1003312
BioSample: SAMN36887271
Platform: PACBIO_SMRT
Instrument: Sequel II
Organism: Homo sapiens
Sample attributes
source_name: Kidney
tissue: Kidney
cell line: HEK293XT
cell type: immortalized cell line
replicate: 2
geo_loc_name: missing
collection_date: missing
Original files (1)
Kidney
Runs (1)
Run Spots Bases Size (MB) Files Link
SRR25567593 6020481 25988719587 7591.62 m64278e_230505_212742.reads.bam, SRR25567593 SRA

Linked Publications (1)

Data Files (2)

Accession File Name Stored Type Output Type Mapping Assembly Size Download
m64278e_230504_212705.reads.bam RNA-Seq 6.7 GB link
m64278e_230505_212742.reads.bam RNA-Seq 7.4 GB link