Sun J, Kale S P, Childress A M, Pinswasdi C, Jazwinski S M
Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, New Orleans 70112.
J Biol Chem. 1994 Jul 15;269(28):18638-45.
Individual cells of the yeast Saccharomyces cerevisiae have a limited replicative life-span. The role of the genes RAS1 and RAS2 in yeast longevity was examined. Over-expression of RAS2 led to a 30% increase in the life-span on average and postponed the senescence-related increase in generation time seen during yeast aging. No life-span extension was obtained by overexpression of RAS1. However, deletion of RAS1 prolonged the life-span. These results suggest that RAS1 and RAS2 play reciprocal roles in determining yeast longevity. RAS1 and RAS2 mRNA and protein levels declined with replicative age, suggesting a diminishing impact on yeast longevity. The major known pathway through which Ras proteins function in yeast involves stimulation of adenylate cyclase. No evidence for a life-span-extending effect of elevated intracellular cAMP was found. Indeed, high intracellular cAMP was associated with curtailed life-span. A similar decrease in life-span was found on disruption of BCY1, which codes for the regulatory subunit of protein kinase A, the downstream target of cAMP. Importantly, overexpression of an effector domain mutant of RAS2, defective in stimulation of adenylate cyclase, prolonged life-span to the same extent as the wild-type gene, suggesting that the cAMP pathway is neither sufficient nor necessary for increased longevity.
酿酒酵母的单个细胞具有有限的复制寿命。研究了基因RAS1和RAS2在酵母寿命中的作用。RAS2的过表达平均使寿命延长了30%,并推迟了酵母衰老过程中出现的与衰老相关的代时增加。RAS1的过表达未获得寿命延长。然而,RAS1的缺失延长了寿命。这些结果表明,RAS1和RAS2在决定酵母寿命方面发挥着相反的作用。RAS1和RAS2的mRNA和蛋白质水平随复制年龄而下降,表明对酵母寿命的影响逐渐减弱。已知Ras蛋白在酵母中发挥作用的主要途径涉及刺激腺苷酸环化酶。未发现细胞内cAMP升高具有延长寿命的作用。事实上,细胞内高cAMP与寿命缩短有关。在编码蛋白激酶A(cAMP的下游靶点)调节亚基的BCY1被破坏时,也发现了类似的寿命缩短情况。重要的是,RAS2的效应结构域突变体(在刺激腺苷酸环化酶方面存在缺陷)的过表达使寿命延长到与野生型基因相同的程度,这表明cAMP途径对于延长寿命既非充分条件也非必要条件。