Logo image
Sign in
Intron retention enhances gene regulatory complexity in vertebrates
Journal article   Open access   Peer reviewed

Intron retention enhances gene regulatory complexity in vertebrates

Ulf Schmitz, Natalia Pinello, Fangzhi Jia, Sultan Alasmari, William Ritchie, Maria-Cristina Keightley, Shaniko Shini, Graham Lieschke, Justin J-L Wong and John Rasko
Genome Biology, Vol.18(1)
12/2017
PMID: 29141666

Abstract

Alternative splicing Evolution Gene regulation Granulocytes Intron retention Transcriptomic complexity
While intron retention (IR) is now widely accepted as an important mechanism of mammalian gene expression control, it remains the least studied form of alternative splicing. To delineate conserved features of IR, we performed an exhaustive phylogenetic analysis in a highly purified and functionally defined cell type comprising neutrophilic granulocytes from five vertebrate species spanning 430 million years of evolution.
url
Find in HALView
url
https://doi.org/10.1186/s13059-017-1339-3View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image