Kyoto Institute of Technology, Matsugasaki, Kyoto, Japan.
Appl Environ Microbiol. 2013 Mar;79(5):1661-7. doi: 10.1128/AEM.02797-12. Epub 2012 Dec 28.
Various forms of stress can cause an attenuation of bulk translation activity and the accumulation of nontranslating mRNAs into cytoplasmic messenger RNP (mRNP) granules termed processing bodies (P-bodies) and stress granules (SGs) in eukaryotic cells. Furfural and 5-hydroxymethylfurfural (HMF), derived from lignocellulosic biomass, inhibit yeast growth and fermentation as stressors. Since there is no report regarding their effects on the formation of cytoplasmic mRNP granules, here we investigated whether furfural and HMF cause the assembly of yeast P-bodies and SGs accompanied by translational repression. We found that furfural and HMF cause the attenuation of bulk translation activity and the assembly of cytoplasmic mRNP granules in Saccharomyces cerevisiae. Notably, a combination of furfural and HMF induced the remarkable repression of translation initiation and SG formation. These findings provide new information about the physiological effects of furfural and HMF on yeast cells, and also suggest the potential usefulness of cytoplasmic mRNP granules as a warning sign or index of the deterioration of cellular physiological status in the fermentation of lignocellulosic hydrolysates.
各种形式的应激可以导致真核细胞中翻译总体活性的衰减,并导致非翻译的 mRNAs 积累成细胞质信使 RNP(mRNP)颗粒,称为处理体(P 体)和应激颗粒(SG)。糠醛和 5-羟甲基糠醛(HMF),来源于木质纤维素生物质,作为应激原抑制酵母生长和发酵。由于没有关于它们对细胞质 mRNP 颗粒形成影响的报道,因此我们在这里研究了糠醛和 HMF 是否会导致酵母 P 体和 SG 的组装,同时伴随着翻译抑制。我们发现糠醛和 HMF 导致酿酒酵母中翻译总体活性的衰减和细胞质 mRNP 颗粒的组装。值得注意的是,糠醛和 HMF 的组合导致翻译起始和 SG 形成的显著抑制。这些发现为糠醛和 HMF 对酵母细胞的生理效应提供了新的信息,并且还表明细胞质 mRNP 颗粒作为木质纤维素水解物发酵中细胞生理状态恶化的警告信号或指标具有潜在的用途。