Pseudouridine is the most abundant RNA modification, yet except for a few well-studied cases, little is known about the modified positions and their function(s). Here, we develop Ψ-seq for transcriptome-wide quantitative mapping of pseudouridine. We validate Ψ-seq with spike-ins and de novo identification of previously reported positions and discover hundreds of unique sites in human and yeast mRNAs and snoRNAs. Perturbing pseudouridine synthases (PUS) uncovers which pseudouridine synthase modifies each site and their target sequence features. mRNA pseudouridinylation depends on both site-specific and snoRNA-guided pseudouridine synthases. Upon heat shock in yeast, Pus7p-mediated pseudouridylation is induced at >200 sites, and PUS7 deletion...
Pseudouridine (Psi) is the most abundant posttranscriptional RNA modification; yet little is known a...
A common post-transcriptional modification of RNA is the conversion of uridine to its isomer pseudou...
Pseudouridine is the most abundant modification found in RNA. Today, thanks to next-generation seque...
Pseudouridine is the most abundant RNA modification, yet except for a few well-studied cases, little...
SummaryPseudouridine is the most abundant RNA modification, yet except for a few well-studied cases,...
Post-transcriptional modification of RNA nucleosides occurs in all living organisms. Pseudouridine, ...
<div><p>We developed a novel technique, called pseudouridine site identification sequencing (PSI-seq...
Here, we develop and apply a semi-quantitative method for the high-confidence identification of pseu...
The isomerization of uridine to pseudouridine (W), known as pseudouridylation, is the most abundant ...
More than 100 different types of chemical modifications to RNA have been documented so far. Historic...
Pseudouridine (psi) is the most abundant post-transcriptional RNA modification, yet little is known ...
In human rRNA, at least 104 specific uridine residues are modified to pseudouridine. Many of these p...
The structure, stability, and function of various coding and noncoding RNAs are influenced by chemic...
Pseudouridine is the most abundant modification found in RNA. Today, thanks to next-generation seque...
Pseudouridine (Ψ) is the most prevalent post-transcriptional RNA modification and is widespread in s...
Pseudouridine (Psi) is the most abundant posttranscriptional RNA modification; yet little is known a...
A common post-transcriptional modification of RNA is the conversion of uridine to its isomer pseudou...
Pseudouridine is the most abundant modification found in RNA. Today, thanks to next-generation seque...
Pseudouridine is the most abundant RNA modification, yet except for a few well-studied cases, little...
SummaryPseudouridine is the most abundant RNA modification, yet except for a few well-studied cases,...
Post-transcriptional modification of RNA nucleosides occurs in all living organisms. Pseudouridine, ...
<div><p>We developed a novel technique, called pseudouridine site identification sequencing (PSI-seq...
Here, we develop and apply a semi-quantitative method for the high-confidence identification of pseu...
The isomerization of uridine to pseudouridine (W), known as pseudouridylation, is the most abundant ...
More than 100 different types of chemical modifications to RNA have been documented so far. Historic...
Pseudouridine (psi) is the most abundant post-transcriptional RNA modification, yet little is known ...
In human rRNA, at least 104 specific uridine residues are modified to pseudouridine. Many of these p...
The structure, stability, and function of various coding and noncoding RNAs are influenced by chemic...
Pseudouridine is the most abundant modification found in RNA. Today, thanks to next-generation seque...
Pseudouridine (Ψ) is the most prevalent post-transcriptional RNA modification and is widespread in s...
Pseudouridine (Psi) is the most abundant posttranscriptional RNA modification; yet little is known a...
A common post-transcriptional modification of RNA is the conversion of uridine to its isomer pseudou...
Pseudouridine is the most abundant modification found in RNA. Today, thanks to next-generation seque...