内含子
生物
基因
RNA剪接
遗传学
基因表达
雅罗维亚
计算生物学
选择性拼接
剪接位点突变
剪接
第二组内含子
基因表达调控
转录组
外显子
调节顺序
报告基因
拼接因子
第一组催化内含子
基因组学
小剪接体
基因组
基因预测
RNA序列
前体mRNA
作者
Qi Qi,Pedro Tomaz da Silva,Vasileios Vangalis,Seppe Dockx,Jan Steensels,Karin Voordeckers,Julien Gagneur,Kevin J. Verstrepen
摘要
Introns are widespread among eukaryotic genomes. While intron-containing genes often show higher expression than genes lacking introns, the intron features influencing gene expression remain largely elusive. Here, we systematically characterize the intron landscape of Yarrowia lipolytica, an oleaginous yeast that is increasingly used as a microbial cell factory. Transcriptome analysis across 12 environments identified 2421 introns in 1430 genes, including 1302 newly discovered introns and 479 newly annotated intron-containing genes. We find that intron-containing genes exhibit higher and more stable expression across conditions and identify six key intron features, including the 5' splice motif, 3' splice motif, branch point motif, distance from branch point to 3' splice site, GC content, and intron size, that influence splicing efficiency and gene expression. A linear regression model based on these features robustly captures the intron's effect on gene expression, enabling us to select and test 55 different introns that modulate expression of a reporter gene by 200-fold. Moreover, we demonstrate that intron effects are robust across genomic contexts and identify a previously uncharacterized intron, I3, that strongly enhances gene expression and protein production. Together, our results provide new fundamental insights and open new avenues for using introns as regulatory elements.
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