Faucillion Marie-Line, Johansson Anna-Mia, Larsson Jan
Department of Molecular Biology, Umeå University, 901 87 Umeå, Sweden.
Nucleic Acids Res. 2022 May 6;50(8):4372-4388. doi: 10.1093/nar/gkac208.
The steady state levels of RNAs, often referred to as expression levels, result from a well-balanced combination of RNA transcription and decay. Alterations in RNA levels will therefore result from tight regulation of transcription rates, decay rates or both. Here, we explore the role of RNA stability in achieving balanced gene expression and present genome-wide RNA stabilities in Drosophila melanogaster male and female cells as well as male cells depleted of proteins essential for dosage compensation. We identify two distinct RNA-stability mediated responses involved in regulation of gene expression. The first of these responds to acute and global changes in transcription and thus counteracts potentially harmful gene mis-expression by shifting the RNA stability in the direction opposite to the transcriptional change. The second response enhances inter-individual differential gene expression by adjusting the RNA stability in the same direction as a transcriptional change. Both mechanisms are global, act on housekeeping as well as non-housekeeping genes and were observed in both flies and mammals. Additionally, we show that, in contrast to mammals, modulation of RNA stability does not detectably contribute to dosage compensation of the sex-chromosomes in D. melanogaster.
RNA的稳态水平,通常称为表达水平,是RNA转录和降解平衡组合的结果。因此,RNA水平的改变将源于转录速率、降解速率或两者的严格调控。在这里,我们探讨了RNA稳定性在实现平衡基因表达中的作用,并展示了黑腹果蝇雄性和雌性细胞以及缺乏剂量补偿所需蛋白质的雄性细胞中的全基因组RNA稳定性。我们确定了两种不同的由RNA稳定性介导的参与基因表达调控的反应。第一种反应对转录中的急性和全局变化做出响应,从而通过将RNA稳定性向与转录变化相反的方向转变来抵消潜在有害的基因错误表达。第二种反应通过将RNA稳定性调整到与转录变化相同的方向来增强个体间的差异基因表达。这两种机制都是全局性的,作用于管家基因和非管家基因,并且在果蝇和哺乳动物中都观察到了。此外,我们表明,与哺乳动物不同,RNA稳定性的调节对黑腹果蝇性染色体的剂量补偿没有明显贡献。