Center for Bio/Molecular Science & Engineering, Naval Research Laboratory, Washington, DC 20375, USA.
National Research Council, Postdoctoral Fellowship Program, US Naval Research Laboratory, Washington, DC 20744, USA.
Genes (Basel). 2020 Sep 25;11(10):1128. doi: 10.3390/genes11101128.
The yeast exhibits high resistance to γ-radiation in comparison to many other fungi. Several aspects of this phenotype have been characterized, including its dependence on homologous recombination for the repair of radiation-induced DNA damage, and the transcriptomic response invoked by acute γ-radiation exposure in this organism. However, these findings have yet to identify unique γ-radiation exposure survival strategies-many genes that are induced by γ-radiation exposure do not appear to be important for recovery, and the homologous recombination machinery of this organism is not unique compared to more sensitive species. To identify features associated with γ-radiation resistance, here we characterized the proteomes of two strains-the wild type and a hyper-resistant strain developed through adaptive laboratory evolution-before and after γ-radiation exposure. The results demonstrate that protein intensities do not change substantially in response to this stress. Rather, the increased resistance exhibited by the evolved strain may be due in part to increased basal levels of single-stranded binding proteins and a large increase in ribosomal content, possibly allowing for a more robust, induced response during recovery. This experiment provides evidence enabling us to focus on DNA replication, protein production, and ribosome levels for further studies into the mechanism of γ-radiation resistance in and other fungi.
与许多其他真菌相比,酵母表现出对γ-辐射的高抗性。该表型的几个方面已经得到了描述,包括其对同源重组修复辐射诱导的 DNA 损伤的依赖性,以及该生物体急性γ辐射暴露所引发的转录组反应。然而,这些发现尚未确定独特的γ辐射暴露生存策略——许多因γ辐射暴露而诱导的基因似乎对恢复不重要,并且与更敏感的物种相比,该生物体的同源重组机制并不独特。为了鉴定与γ-辐射抗性相关的特征,我们在这里在γ-辐射暴露前后对两个菌株(野生型和通过适应性实验室进化产生的高抗性菌株)的蛋白质组进行了表征。结果表明,蛋白质强度不会因这种应激而发生显著变化。相反,进化菌株表现出的增强的抗性可能部分归因于单链结合蛋白的基础水平增加和核糖体含量的大量增加,这可能在恢复过程中允许更稳健的诱导反应。该实验提供了证据,使我们能够专注于 DNA 复制、蛋白质生产和核糖体水平,以进一步研究酵母和其他真菌的γ-辐射抗性机制。