Department of Biology, Baylor University, Waco, Texas, 76798, USA.
Yeast. 2021 Sep;38(9):507-520. doi: 10.1002/yea.3565. Epub 2021 May 21.
Regulation of mRNA steady-state levels is important in controlling gene expression particularly in response to environmental stimuli. This allows cells to rapidly respond to environment changes. The highly conserved nonsense-mediated mRNA decay (NMD) pathway was initially identified as a pathway that degrades aberrant mRNAs. NMD is now recognized as a pathway with additional functions including precisely regulating the expression of select natural mRNAs. Majority of these natural mRNAs encode fully functional proteins. Regulation of natural mRNAs by NMD is activated by NMD targeting features and environmental cues. Here, we show that Saccharomyces cerevisiae strains from three genetic backgrounds respond differentially to NMD depending on the environmental stimuli. We found that wild type and NMD mutant W303a, BY4741, and RM11-1a yeast strains respond similarly to copper in the environment but respond differentially to toxic cadmium. Furthermore, the PCA1 alleles encoding different mRNAs from W303a and RM11-1a strains are regulated similarly by NMD in response to the bio-metal copper but differentially in response to toxic cadmium.
mRNA 稳态水平的调控对于控制基因表达非常重要,特别是在应对环境刺激时。这使得细胞能够快速响应环境变化。高度保守的无意义介导的 mRNA 降解(NMD)途径最初被鉴定为一种降解异常 mRNA 的途径。现在,NMD 被认为是一种具有额外功能的途径,包括精确调节选择天然 mRNA 的表达。这些天然 mRNA 中的大多数编码具有完整功能的蛋白质。NMD 通过 NMD 靶向特征和环境线索来调节天然 mRNA 的表达。在这里,我们展示了来自三种遗传背景的酿酒酵母菌株对 NMD 的反应因环境刺激而不同。我们发现,野生型和 NMD 突变体 W303a、BY4741 和 RM11-1a 酵母菌株对环境中的铜反应相似,但对有毒镉的反应不同。此外,来自 W303a 和 RM11-1a 菌株的不同 mRNA 的 PCA1 等位基因在响应生物金属铜时通过 NMD 被相似地调节,但在响应有毒镉时被不同地调节。