Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of splicing is known to be associated with disease and as a hallmark of cancer. Existing tools for differential transcript usage (DTU) analysis either lack in performance, cannot account for complex experimental designs or do not scale to massive scRNA-seq data. We introduce satuRn, a fast and flexible quasi-binomial generalized linear modelling framework that is on par with the best performing DTU methods from the bulk RNA-seq realm, while providing good false discovery rate control, addressing complex experimental designs and scaling to scRNA-seq applications
Detection of differential transcript usage (DTU) from RNA-seq data is an important bioinformatic ana...
RNA-sequencing has revolutionized biomedical research and, in particular, our ability to study gene ...
High-throughput sequencing protocols such as RNA-seq have made it possible to interrogate the sequen...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
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...
The emergence of RNA-seq technology has made it possible to estimate isoform-specific gene expressio...
Differential splicing (DS) is a post-transcriptional biological process with critical, wide-ranging ...
RNA-Sequencing (RNA-Seq) has enabled detailed unbiased profiling of whole transcriptomes with incred...
RNA-Sequencing (RNA-Seq) has enabled detailed unbiased profiling of whole transcriptomes with incred...
Changes in gene expression can correlate with poor disease outcomes in two ways: through changes in ...
The computational prediction of alternative splicing from high-throughput sequencing data is inheren...
Alternative splicing plays a key role in regulating gene expression, and more than 90% of human gene...
The RNA transcriptome varies in response to cellular differentiation as well as environmental factor...
RNA-Seq is a powerful tool for the study of alternative splicing and other forms of alternative isof...
Detection of differential transcript usage (DTU) from RNA-seq data is an important bioinformatic ana...
RNA-sequencing has revolutionized biomedical research and, in particular, our ability to study gene ...
High-throughput sequencing protocols such as RNA-seq have made it possible to interrogate the sequen...
Alternative splicing produces multiple functional transcripts from a single gene. Dysregulation of s...
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...
The emergence of RNA-seq technology has made it possible to estimate isoform-specific gene expressio...
Differential splicing (DS) is a post-transcriptional biological process with critical, wide-ranging ...
RNA-Sequencing (RNA-Seq) has enabled detailed unbiased profiling of whole transcriptomes with incred...
RNA-Sequencing (RNA-Seq) has enabled detailed unbiased profiling of whole transcriptomes with incred...
Changes in gene expression can correlate with poor disease outcomes in two ways: through changes in ...
The computational prediction of alternative splicing from high-throughput sequencing data is inheren...
Alternative splicing plays a key role in regulating gene expression, and more than 90% of human gene...
The RNA transcriptome varies in response to cellular differentiation as well as environmental factor...
RNA-Seq is a powerful tool for the study of alternative splicing and other forms of alternative isof...
Detection of differential transcript usage (DTU) from RNA-seq data is an important bioinformatic ana...
RNA-sequencing has revolutionized biomedical research and, in particular, our ability to study gene ...
High-throughput sequencing protocols such as RNA-seq have made it possible to interrogate the sequen...