SummaryUnderstanding how RNA binding proteins control the splicing code is fundamental to human biology and disease. Here, we present a comprehensive study to elucidate how heterogeneous nuclear ribonucleoparticle (hnRNP) proteins, among the most abundant RNA binding proteins, coordinate to regulate alternative pre-mRNA splicing (AS) in human cells. Using splicing-sensitive microarrays, crosslinking and immunoprecipitation coupled with high-throughput sequencing (CLIP-seq), and cDNA sequencing, we find that more than half of all AS events are regulated by multiple hnRNP proteins and that some combinations of hnRNP proteins exhibit significant synergy, whereas others act antagonistically. Our analyses reveal position-dependent RNA splicing m...
Alternative pre-mRNA splicing plays a major role in expanding the transcript output of human genes. ...
Eukaryotic cells express a large variety of RNA binding proteins (RBPs), with diverse affinities and...
Two critical steps in mRNA processing are 3’ processing and splicing, both of which diversify the hu...
Understanding how RNA binding proteins control the splicing code is fundamental to human biology and...
SummaryUnderstanding how RNA binding proteins control the splicing code is fundamental to human biol...
Alternative splicing is a critical component of human gene control that generates functional diversi...
Alternative premessenger RNA (pre-mRNA) splicing is a post-transcriptional mechanism for controlling...
Alternative splicing is a critical component of human gene control that generates functional diversi...
Alternative splicing is a highly regulated process that greatly increases the proteome diversity and...
Alternative splicing (AS) is a co- or post-transcriptional process by which one gene gives rise to m...
<p>hnRNPs are polyvalent RNA binding proteins that have been implicated in a range of regulatory rol...
Nascent transcripts produced by RNA polymerase II in eukaryotic cells are subject to extensive proce...
Pre-mRNA splicing relies on the poorly understood dynamic interplay between >150 protein components ...
We recently characterized human hnRNP L as a global regulator of alternative splicing, binding to CA...
Brooks et al. 2 Alternative splicing is regulated by RNA binding proteins (RBPs) that recognize pre-...
Alternative pre-mRNA splicing plays a major role in expanding the transcript output of human genes. ...
Eukaryotic cells express a large variety of RNA binding proteins (RBPs), with diverse affinities and...
Two critical steps in mRNA processing are 3’ processing and splicing, both of which diversify the hu...
Understanding how RNA binding proteins control the splicing code is fundamental to human biology and...
SummaryUnderstanding how RNA binding proteins control the splicing code is fundamental to human biol...
Alternative splicing is a critical component of human gene control that generates functional diversi...
Alternative premessenger RNA (pre-mRNA) splicing is a post-transcriptional mechanism for controlling...
Alternative splicing is a critical component of human gene control that generates functional diversi...
Alternative splicing is a highly regulated process that greatly increases the proteome diversity and...
Alternative splicing (AS) is a co- or post-transcriptional process by which one gene gives rise to m...
<p>hnRNPs are polyvalent RNA binding proteins that have been implicated in a range of regulatory rol...
Nascent transcripts produced by RNA polymerase II in eukaryotic cells are subject to extensive proce...
Pre-mRNA splicing relies on the poorly understood dynamic interplay between >150 protein components ...
We recently characterized human hnRNP L as a global regulator of alternative splicing, binding to CA...
Brooks et al. 2 Alternative splicing is regulated by RNA binding proteins (RBPs) that recognize pre-...
Alternative pre-mRNA splicing plays a major role in expanding the transcript output of human genes. ...
Eukaryotic cells express a large variety of RNA binding proteins (RBPs), with diverse affinities and...
Two critical steps in mRNA processing are 3’ processing and splicing, both of which diversify the hu...