Department of Biochemistry, University of Washington, Seattle, Washington 98195, USA.
Genetics. 2012 May;191(1):107-18. doi: 10.1534/genetics.111.136549. Epub 2012 Feb 29.
In Saccharomyces cerevisiae, 59 of the 78 ribosomal proteins are encoded by duplicated genes that, in most cases, encode identical or very similar protein products. However, different sets of ribosomal protein genes have been identified in screens for various phenotypes, including life span, budding pattern, and drug sensitivities. Due to potential suppressors of growth rate defects among this set of strains in the ORF deletion collection, we regenerated the entire set of haploid ribosomal protein gene deletion strains in a clean genetic background. The new strains were used to create double deletions lacking both paralogs, allowing us to define a set of 14 nonessential ribosomal proteins. Replicative life-span analysis of new strains corresponding to ORF deletion collection strains that likely carried suppressors of growth defects identified 11 new yeast replicative aging genes. Treatment of the collection of ribosomal protein gene deletion strains with tunicamycin revealed a significant correlation between slow growth and resistance to ER stress that was recapitulated by reducing translation of wild-type yeast with cycloheximide. Interestingly, enhanced tunicamycin resistance in ribosomal protein gene deletion mutants was independent of the unfolded protein response transcription factor Hac1. These data support a model in which reduced translation is protective against ER stress by a mechanism distinct from the canonical ER stress response pathway and further add to the diverse yet specific phenotypes associated with ribosomal protein gene deletions.
在酿酒酵母中,78 个核糖体蛋白中有 59 个是由重复基因编码的,这些基因在大多数情况下编码相同或非常相似的蛋白质产物。然而,在各种表型的筛选中,包括寿命、出芽模式和药物敏感性,已经确定了不同的核糖体蛋白基因集。由于在 ORF 缺失集的这组菌株中存在生长速度缺陷的潜在抑制子,我们在干净的遗传背景下重新生成了整个单倍体核糖体蛋白基因缺失菌株集。新菌株用于创建缺乏两个同源基因的双缺失,使我们能够定义一组 14 个非必需的核糖体蛋白。对可能携带生长缺陷抑制子的 ORF 缺失集菌株的新菌株进行复制寿命分析,确定了 11 个新的酵母复制衰老基因。用衣霉素处理核糖体蛋白基因缺失菌株集,发现与 ER 应激相关的缓慢生长和耐药性之间存在显著相关性,用环己酰亚胺降低野生型酵母的翻译可以再现这种相关性。有趣的是,核糖体蛋白基因缺失突变体中增强的衣霉素耐药性与未折叠蛋白反应转录因子 Hac1 无关。这些数据支持一种模型,即通过一种与经典 ER 应激反应途径不同的机制,减少翻译对 ER 应激具有保护作用,并且进一步增加了与核糖体蛋白基因缺失相关的不同但特定的表型。