Differential splicing (DS) is a post-transcriptional biological process with critical, wide-ranging effects on a plethora of cellular activities and disease processes. To date, a number of computational approaches have been developed to identify and quantify differentially spliced genes from RNA-seq data, but a comprehensive intercomparison and appraisal of these approaches is currently lacking. In this study, we systematically evaluated 10 DS analysis tools for consistency and reproducibility, precision, recall and false discovery rate, agreement upon reported differentially spliced genes and functional enrichment. The tools were selected to represent the three different methodological categories: exon-based (DEXSeq, edgeR, JunctionSeq, li...
Despite the many approaches to study differential splicing from RNA-seq, many challenges remain unso...
BACKGROUND: Finding genes that are differentially expressed between conditions is an integral part o...
L'épissage alternatif est un processus biologique qui génère la diversité du protéome malgré le nomb...
The computational prediction of alternative splicing from high-throughput sequencing data is inheren...
Background The analysis of differential splicing (DS) is crucial for understanding physiological pro...
Alternative splicing is an important biological process in the generation of multiple functional tra...
Alternative splicing plays a key role in regulating gene expression, and more than 90% of human gene...
RNA-Seq is a powerful tool for the study of alternative splicing and other forms of alternative isof...
The RNA transcriptome varies in response to cellular differentiation as well as environmental factor...
Over the last few years, RNA-seq has been used to study alterations in alternative splicing related ...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
Alternative splicing is an important biological process in the generation of multiple functional tra...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
The emergence of RNA-seq technology has made it possible to estimate isoform-specific gene expressio...
Despite the many approaches to study differential splicing from RNA-seq, many challenges remain unso...
BACKGROUND: Finding genes that are differentially expressed between conditions is an integral part o...
L'épissage alternatif est un processus biologique qui génère la diversité du protéome malgré le nomb...
The computational prediction of alternative splicing from high-throughput sequencing data is inheren...
Background The analysis of differential splicing (DS) is crucial for understanding physiological pro...
Alternative splicing is an important biological process in the generation of multiple functional tra...
Alternative splicing plays a key role in regulating gene expression, and more than 90% of human gene...
RNA-Seq is a powerful tool for the study of alternative splicing and other forms of alternative isof...
The RNA transcriptome varies in response to cellular differentiation as well as environmental factor...
Over the last few years, RNA-seq has been used to study alterations in alternative splicing related ...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
Alternative splicing is an important biological process in the generation of multiple functional tra...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
The emergence of RNA-seq technology has made it possible to estimate isoform-specific gene expressio...
Despite the many approaches to study differential splicing from RNA-seq, many challenges remain unso...
BACKGROUND: Finding genes that are differentially expressed between conditions is an integral part o...
L'épissage alternatif est un processus biologique qui génère la diversité du protéome malgré le nomb...