Damon Jadyn R, Pincus David, Ploegh Hidde L
Whitehead Institute for Biomedical Research, Cambridge, MA 02142.
Whitehead Institute for Biomedical Research, Cambridge, MA 02142
Mol Biol Cell. 2015 Jan 15;26(2):270-82. doi: 10.1091/mbc.E14-06-1145. Epub 2014 Nov 12.
Although tRNA modifications have been well catalogued, the precise functions of many modifications and their roles in mediating gene expression are still being elucidated. Whereas tRNA modifications were long assumed to be constitutive, it is now apparent that the modification status of tRNAs changes in response to different environmental conditions. The URM1 pathway is required for thiolation of the cytoplasmic tRNAs tGlu(UUC), tGln(UUG), and tLys(UUU) in Saccharomyces cerevisiae. We demonstrate that URM1 pathway mutants have impaired translation, which results in increased basal activation of the Hsf1-mediated heat shock response; we also find that tRNA thiolation levels in wild-type cells decrease when cells are grown at elevated temperature. We show that defects in tRNA thiolation can be conditionally advantageous, conferring resistance to endoplasmic reticulum stress. URM1 pathway proteins are unstable and hence are more sensitive to changes in the translational capacity of cells, which is decreased in cells experiencing stresses. We propose a model in which a stress-induced decrease in translation results in decreased levels of URM1 pathway components, which results in decreased tRNA thiolation levels, which further serves to decrease translation. This mechanism ensures that tRNA thiolation and translation are tightly coupled and coregulated according to need.
尽管tRNA修饰已被详细分类,但许多修饰的确切功能及其在介导基因表达中的作用仍在阐明之中。长期以来,人们一直认为tRNA修饰是组成型的,但现在很明显,tRNA的修饰状态会根据不同的环境条件而变化。在酿酒酵母中,URM1途径是细胞质tRNAs tGlu(UUC)、tGln(UUG)和tLys(UUU)硫醇化所必需的。我们证明,URM1途径突变体的翻译受损,这导致Hsf1介导的热休克反应的基础激活增加;我们还发现,当细胞在高温下生长时,野生型细胞中的tRNA硫醇化水平会降低。我们表明,tRNA硫醇化缺陷可能具有条件优势,赋予对内质网应激的抗性。URM1途径蛋白不稳定,因此对细胞翻译能力的变化更敏感,而在经历应激的细胞中翻译能力会降低。我们提出了一个模型,其中应激诱导的翻译减少导致URM1途径成分水平降低,进而导致tRNA硫醇化水平降低,这进一步导致翻译减少。这种机制确保tRNA硫醇化和翻译根据需要紧密耦合并共同调节。