Mankouri H W, Morgan A
Department of Physiology, University of Liverpool, PO Box 147, Crown Street, L69 3BX, Liverpool, UK.
Mech Ageing Dev. 2001 Aug;122(11):1107-20. doi: 10.1016/s0047-6374(01)00253-6.
The Saccharomyces cerevisiae SGS1 gene is a member of the RecQ family of ATP-dependent DNA helicases, which includes the human WRN, BLM and RECQ4 genes. Mutations in the WRN gene cause the human premature ageing disorder, Werner's syndrome. Deletion of the SGS1 gene also causes premature ageing in yeast, suggesting that the molecular mechanisms of cellular ageing may be evolutionarily conserved. To investigate the role of the RecQ helicase domain in ageing, a point mutation (SGS1 K(706)-->A) known to eliminate the DNA helicase activity of Sgs1p was constructed. This mutant allele failed to rescue the premature ageing of the sgs1Delta strain, demonstrating that Sgs1p DNA helicase activity is required for a normal lifespan. In contrast, the SGS1 K(706)-->A allele was sufficient to rescue the hypersensitivity of the sgs1Delta strain to topoisomerase inhibitors, but not other genotoxic agents. These findings support the idea that Sgs1p fulfils multiple cellular functions, and that DNA helicase activity is dispensable for some of these (e.g. functional interaction with topoisomerases), but essential for others (e.g. longevity).
酿酒酵母SGS1基因是ATP依赖型DNA解旋酶RecQ家族的成员之一,该家族包括人类的WRN、BLM和RECQ4基因。WRN基因突变会导致人类早衰疾病——沃纳综合征。SGS1基因的缺失也会导致酵母早衰,这表明细胞衰老的分子机制可能在进化上是保守的。为了研究RecQ解旋酶结构域在衰老中的作用,构建了一个已知可消除Sgs1p DNA解旋酶活性的点突变(SGS1 K(706)-->A)。这个突变等位基因无法挽救sgs1Delta菌株的早衰现象,这表明Sgs1p DNA解旋酶活性是正常寿命所必需的。相比之下,SGS1 K(706)-->A等位基因足以挽救sgs1Delta菌株对拓扑异构酶抑制剂的超敏反应,但对其他基因毒性剂则无效。这些发现支持了这样一种观点,即Sgs1p具有多种细胞功能,并且DNA解旋酶活性对于其中一些功能(例如与拓扑异构酶的功能相互作用)是可有可无的,但对其他功能(例如寿命)则是必不可少的。