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Pseudouridine profiling reveals widespread regulated mRNA pseudouridylation in yeast and human cells
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PSI-seq to Identify Sites of Pseudouridylation in S. cerevisiae
Transcriptome-wide mapping reveals widespread dynamic regulated pseudouridylation of mRNA
Pseudouridine synthases modify human pre-mRNA co-transcriptionally and affect splicing
PubMed Full text in PMC Similar studies Analyze with GEO2RSRA Run Selector
Chemical Pull-Down Reveals Comprehensive and Dynamic Pseudouridylation in Mammalian Transcriptome
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Transcriptome-wide analysis of pseudouridinylation in Drosophila melanogaster
PubMed Full text in PMC Similar studies
Predominant TRUB1-dependent pseudouridylation of mammalian mRNA via a predictable and conserved code
The molecular basis of tRNA selectivity by human pseudouridine synthase 3 (PUS3)
Quantitative profiling of pseudouridylation landscape in the human transcriptome
PubMed Similar studies
Mapping of pseudouridine residues on cellular and viral transcripts using a novel antibody-based technique
Quantitative sequencing using BID-seq uncovers abundant pseudouridines in mammalian mRNA at base resolution
Pseudouridines have context-dependent mutation and stop rates in high-throughput sequencing
Interferon inducible pseudouridine modification in human mRNA by quantitative nanopore profiling
Interferon inducible pseudouridine modification in human mRNA by quantitative nanopore profiling (Illumina)
Interferon inducible pseudouridine modification in human mRNA by quantitative nanopore profiling (Nanopore)
Co-transcriptional pseudouridylation of mRNAs by the H/ACA complex controls translational efficiency.
Co-transcriptional pseudouridylation of mRNAs by the H/ACA complex controls translational efficiency [iCLIP]
PubMed Full text in PMC Similar studies Analyze with GEO2R
Co-transcriptional pseudouridylation of mRNAs by the H/ACA complex controls translational efficiency [RNA-seq]
Co-transcriptional pseudouridylation of mRNAs by the H/ACA complex controls translational efficiency [ChIP-seq]
Alterations of ribosomal RNA pseudouridylation in human breast cancer
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