Department of Genetics, Evolution and Environment, and Institute of Healthy Ageing, Darwin Building, University College London, Gower Street, London WC1E 6BT, UK.
Biol Open. 2014 Feb 15;3(2):161-71. doi: 10.1242/bio.20147245.
Target of rapamycin complex 1 (TORC1), which controls growth in response to nutrients, promotes ageing in multiple organisms. The fission yeast Schizosaccharomyces pombe emerges as a valuable genetic model system to study TORC1 function and cellular ageing. Here we exploited the combinatorial action of rapamycin and caffeine, which inhibit fission yeast growth in a TORC1-dependent manner. We screened a deletion library, comprising ∼84% of all non-essential fission yeast genes, for drug-resistant mutants. This screen identified 33 genes encoding functions such as transcription, kinases, mitochondrial respiration, biosynthesis, intra-cellular trafficking, and stress response. Among the corresponding mutants, 5 showed shortened and 21 showed increased maximal chronological lifespans; 15 of the latter mutants showed no further lifespan increase with rapamycin and might thus represent key targets downstream of TORC1. We pursued the long-lived sck2 mutant with additional functional analyses, revealing that the Sck2p kinase functions within the TORC1 network and is required for normal cell growth, global protein translation, and ribosomal S6 protein phosphorylation in a nutrient-dependent manner. Notably, slow cell growth was associated with all long-lived mutants while oxidative-stress resistance was not.
雷帕霉素靶蛋白复合物 1(TORC1)是一种控制营养物质响应生长的蛋白复合物,它能够促进多种生物的衰老。裂殖酵母 Schizosaccharomyces pombe 是一种很有价值的遗传模式生物,可以用于研究 TORC1 的功能和细胞衰老。在这里,我们利用雷帕霉素和咖啡因的组合作用,这两种药物能够以 TORC1 依赖的方式抑制裂殖酵母的生长。我们对一个删除文库进行了筛选,该文库包含了大约 84%的非必需裂殖酵母基因,以寻找对药物有抗性的突变体。该筛选鉴定出了 33 个基因,它们编码的功能包括转录、激酶、线粒体呼吸、生物合成、细胞内运输和应激反应等。在相应的突变体中,有 5 个表现出缩短的最大时序寿命,有 21 个表现出增加的最大时序寿命;其中 15 个后者突变体在加入雷帕霉素后没有进一步增加寿命,因此可能代表 TORC1 下游的关键靶点。我们对长寿命的 sck2 突变体进行了进一步的功能分析,结果表明 Sck2p 激酶在 TORC1 网络中发挥作用,并且在营养依赖的情况下,对正常的细胞生长、全局蛋白质翻译和核糖体 S6 蛋白磷酸化都是必需的。值得注意的是,所有长寿命突变体都与缓慢的细胞生长有关,而与氧化应激抗性无关。