GEO series
SARS-CoV-2 mRNA vaccine is re-adenylated in vivo, enhancing antigen production and immune response
GSE233059
Mus musculus; synthetic construct
Expression profiling by high throughput sequencing
9 samples
2025/01/09
GPL24247GPL26526
Summary
Though mRNA vaccines against COVID-19 have revolutionized vaccinology and have been administered in billions of doses, we know incredibly little about how mRNA vaccines are metabolized in vivo. Here we implemented enhanced nanopore Direct RNA sequencing (eDRS), to enable the analysis of single Moderna’s mRNA-1273 molecules, giving in vivo information about the sequence and poly(A) tails. We show that mRNA-1273, with all uridines replaced by N1-methylpseudouridine (mΨ), is terminated by a long poly(A) tail (~100 nucleotides) followed by an mΨCmΨAG sequence. In model cell lines, mRNA-1273 is swiftly degraded in a process initiated by the removal of mΨCmΨAG, followed by CCR4-NOT-mediated deadenylation. In contrast, intramuscularly inoculated mRNA-1273 undergoes more complex modifications. Notably, mRNA-1273 molecules are re-adenylated after mΨCmΨAG removal. Detailed analysis of immune cells involved in antigen production revealed that in macrophages, after mΨCmΨAG removal, vaccine mRNA is very efficiently re-adenylated, and poly(A) tails can reach up to 200A. In contrast, in dendritic cells, vaccine mRNA undergoes slow deadenylation-dependent decay. We further demonstrate that enhancement of mRNA stability in macrophages is mediated by TENT5 poly(A) polymerases, whose expression is induced by the vaccine itself. Lack of TENT5-mediated re-adenylation results in lower antigen production and severely compromises specific immunoglobulin production following vaccination. Together, our findings provide an unexpected principle for the high efficacy of mRNA vaccines and open new possibilities for their improvement. They also emphasize that, in addition to targeting a protein of interest, the design of mRNA therapeutics should be customized to its cellular destination.
Download
NCBI GEO page ↗
Paper (PMID 40240603) ↗
{# Names what the click gives you. "Open in finder" meant nothing to a
visitor who arrived from a search engine and has never seen the tool. #}
Find more
RNA-seq datasets →
Similar datasets
- GSE266556 Seq-Scope profiling of mouse colon sections with biopsy-induced injuries 2 samples
- GSE314329 Inflammatory Monocytes Constrain YAP-Induced Cell Proliferation 34 samples
- GSE241708 Genomic context sensitizes regulatory elements to genetic disruption 154 samples
- GSE266690 Single cell approaches define neural stem cell niches and identify microglial ligands that enhance precursor-mediated remyelination 33 samples
- GSE274621 Single cell transcriptomes and spatial architecture of pancreatic pre-invasive lesions reveal acinar metaplastic cells' heterogeneity 2 samples
- GSE274507 Reporter CRISPR screens decipher cis- and trans-regulatory principles at the Xist locus 244 samples
- GSE216095 Targeting MYC effector functions in pancreatic cancer by inhibiting the ATPase RUVBL1/2 87 samples
- GSE273615 In vivo armed macrophages curb liver metastasis through tumor reactive T cell rejuvenation 36 samples
Share this dataset
Metadata from NCBI GEO, cached and refreshed periodically — the NCBI page above is authoritative. Downloads link straight to NCBI/ENA; nothing is proxied through BioTransfer.