Most human protein-encoding transcripts contain multiple introns that are removed by splicing. Although splicing catalysis is frequently cotranscriptional, some introns are excised after polyadenylation. Accumulating evidence suggests that delayed splicing has regulatory potential, but the mechanisms are still not well understood. Here we identify a terminal poly(A) tail as being important for a subset of intron excision events that follow cleavage and polyadenylation. In these cases, splicing is promoted by the nuclear poly(A) binding protein, PABPN1, and poly(A) polymerase (PAP). PABPN1 promotes intron excision in the context of 3′-end polyadenylation but not when bound to internal A-tracts. Importantly, the ability of PABPN1 to promote s...
Most eukaryotic mRNAs are subject to considerable post-transcriptional modification, including cappi...
RNA processing events that take place on the transcribed pre-mRNA include capping, splicing, editing...
Splicing of human pre-mRNA is reciprocally coupled to 3′ end formation by terminal exon definition, ...
Most human protein-encoding transcripts contain multiple introns that are removed by splicing. Altho...
Most human protein-encoding transcripts contain multiple introns that are removed by splicing. Altho...
SummaryAlternative cleavage and polyadenylation (APA) is emerging as an important layer of gene regu...
<p>Alternative polyadenylation has been implicated as an important regulator of gene expression. In ...
<div><p>Alternative cleavage and polyadenylation (APA) results in mRNA isoforms containing different...
Most human pre-mRNAs contain introns that are removed by splicing. Such a complex process needs stri...
Alternative polyadenylation has been implicated as an important regulator of gene expression. In som...
Alternative polyadenylation has been implicated as an important regulator of gene expression. In som...
Expression of mature messenger RNAs (mRNAs) requires appropriate transcription initiation and termin...
The human nuclear poly(A)-binding protein PABPN1 has been implicated in the decay of nuclear noncodi...
ABSTRACT: In human, mouse, and Drosophila, the spliceosomal complex U1 snRNP (U1) protects transcrip...
The eukaryotic genome is a large and complex network of molecules that work together to create diver...
Most eukaryotic mRNAs are subject to considerable post-transcriptional modification, including cappi...
RNA processing events that take place on the transcribed pre-mRNA include capping, splicing, editing...
Splicing of human pre-mRNA is reciprocally coupled to 3′ end formation by terminal exon definition, ...
Most human protein-encoding transcripts contain multiple introns that are removed by splicing. Altho...
Most human protein-encoding transcripts contain multiple introns that are removed by splicing. Altho...
SummaryAlternative cleavage and polyadenylation (APA) is emerging as an important layer of gene regu...
<p>Alternative polyadenylation has been implicated as an important regulator of gene expression. In ...
<div><p>Alternative cleavage and polyadenylation (APA) results in mRNA isoforms containing different...
Most human pre-mRNAs contain introns that are removed by splicing. Such a complex process needs stri...
Alternative polyadenylation has been implicated as an important regulator of gene expression. In som...
Alternative polyadenylation has been implicated as an important regulator of gene expression. In som...
Expression of mature messenger RNAs (mRNAs) requires appropriate transcription initiation and termin...
The human nuclear poly(A)-binding protein PABPN1 has been implicated in the decay of nuclear noncodi...
ABSTRACT: In human, mouse, and Drosophila, the spliceosomal complex U1 snRNP (U1) protects transcrip...
The eukaryotic genome is a large and complex network of molecules that work together to create diver...
Most eukaryotic mRNAs are subject to considerable post-transcriptional modification, including cappi...
RNA processing events that take place on the transcribed pre-mRNA include capping, splicing, editing...
Splicing of human pre-mRNA is reciprocally coupled to 3′ end formation by terminal exon definition, ...