Enhanced detection of RNA modifications and mappability with high-accuracy nanopore RNA basecalling models
Diensthuber, G.; Pryszcz, L.; Llovera, L.; Lucas, M. C.; Delgado-Tejedor, A.; Cruciani, S.; Roignant, J.-Y.; Begik, O.; Novoa, E. M.
Show abstract
In recent years, nanopore direct RNA sequencing (DRS) has established itself as a valuable tool for studying the epitranscriptome, due to its ability to detect multiple modifications within the same full-length native RNA molecules. While RNA modifications can be identified in the form of systematic basecalling errors in DRS datasets, N6-methyladenosine (m6A) modifications produce relatively low errors compared to other RNA modifications, limiting the applicability of this approach to m6A sites that are modified at high stoichiometries. Here, we demonstrate that the use of alternative RNA basecalling models, trained with fully unmodified sequences, increases the error signal of m6A, leading to enhanced detection and improved sensitivity even at low stoichiometries. Moreover, we find that high-accuracy alternative RNA basecalling models can show up to 97% median basecalling accuracy, outperforming currently available RNA basecalling models, which show 91% median basecalling accuracy. Notably, the use of high-accuracy basecalling models is accompanied by a significant increase in the number of mapped reads -especially in shorter RNA fractions- and increased basecalling error signatures at pseudouridine ({Psi}) and N1-methylpseudouridine (m1{Psi}) modified sites. Overall, our work demonstrates that alternative RNA basecalling models can be used to improve the detection of RNA modifications, read mappability and basecalling accuracy in nanopore DRS datasets.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Correcting 4sU induced quantification bias in nucleotide conversion RNA-seq data 97%
- Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo 97%
- Direct testing of natural twister ribozymes from over a thousand organisms reveals a broad tolerance for structural imperfections 97%
Similar papers in this journal
- Uncalled4 improves nanopore DNA and RNA modification detection via fast and accurate signal alignment 95%
- Single molecule co-occupancy of RNA-binding proteins with an evolved RNA deaminase 95%
- Nano3P-seq: transcriptome-wide analysis of gene expression and tail dynamics using end-capture nanopore cDNA sequencing 94%
Similar papers in this journal
- Differential BUM-HMM: a robust statistical modelling approach for detecting RNA flexibility changes in high-throughput structure probing data 95%
- SlideCNA: Spatial copy number alteration detection from Slide-seq-like spatial transcriptomics data 95%
- The genetic and biochemical determinants of mRNA degradation rates in mammals 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.