Jordán-Pla Antonio, Zhang Yujie, García-Martínez José, Chattopadhyay Shiladitya, Forte Anabel, Choder Mordechai, Pelechano Vicent, Pérez-Ortín José E
Facultad de Biológicas, Instituto de Biotecnología y Biomedicina (BIOTECMED), Universitat de València, Burjassot, Spain.
Department of Microbiology, SciLifeLab, Tumor and Cell Biology, Karolinska Institutet, Solna, Sweden.
PLoS One. 2025 Jan 22;20(1):e0308195. doi: 10.1371/journal.pone.0308195. eCollection 2025.
The budding yeast Xrn1 protein shuttles between the nucleus, where it stimulates transcription, and the cytoplasm, where it executes the major cytoplasmic mRNA decay. In the cytoplasm, apart from catalyzing 5'→3' decay onto non translated mRNAs, Xrn1 can follow the last translating ribosome to degrade the decapped mRNA template, a process known as "cotranslational mRNA decay". We have previously observed that the import of Xrn1 to the nucleus is required for efficient cytoplasmic mRNA decay. Here by using an Xrn1 mutant that cannot enter the nucleus, but is otherwise functional in ribonuclease activity, we show that nuclear import is necessary for proper global cotranslational decay of mRNAs along coding regions and also affects degradation in the of 5' region of a large group of mRNAs, which comprise about 20% of the transcriptome. Furthermore, a principal component analysis of the genomic datasets of this mutant and other Xrn1 mutants also shows that lack of a cytoplasmic 5'→3' exoribonuclease is the primary cause of the physiological defects seen in a xrn1Δ mutant, but also suggests that Xrn1 import into the nucleus is necessary for its full in vivo functions.
出芽酵母Xrn1蛋白穿梭于细胞核和细胞质之间,在细胞核中它刺激转录,在细胞质中它执行主要的细胞质mRNA降解。在细胞质中,除了催化5'→3'方向对未翻译的mRNA进行降解外,Xrn1还能跟随最后一个正在翻译的核糖体降解脱帽的mRNA模板,这一过程被称为“共翻译mRNA降解”。我们之前观察到,Xrn1进入细胞核对于有效的细胞质mRNA降解是必需的。在此,我们通过使用一种无法进入细胞核但在核糖核酸酶活性方面具有其他功能的Xrn1突变体,表明核输入对于mRNA沿编码区进行适当的全局共翻译降解是必要的,并且还影响一大组mRNA 5'区域的降解,这些mRNA约占转录组的20%。此外,对该突变体和其他Xrn1突变体的基因组数据集进行主成分分析还表明,缺乏细胞质5'→3'外切核糖核酸酶是xrn1Δ突变体中出现生理缺陷的主要原因,但也表明Xrn1进入细胞核对于其完整的体内功能是必要的。