Whitaker Rachel, Faulkner Shakeela, Miyokawa Reika, Burhenn Lucas, Henriksen Mark, Wood Jason G, Helfand Stephen L
Department of Molecular Biology, Cell Biology and Biochemistry, Division of Biology and Medicine, Brown University, Providence, RI 02912, USA.
Aging (Albany NY). 2013 Sep;5(9):682-91. doi: 10.18632/aging.100599.
Sir2, a member of the sirtuin family of protein acylases, deacetylates lysine residues within many proteins and is associated with lifespan extension in a variety of model organisms. Recent studies have questioned the positive effects of Sir2 on lifespan inDrosophila. Several studies have shown that increased expression of the Drosophila Sir2 homolog (dSir2) extends life span while other studies have reported no effect on life span or suggested that increased dSir2 expression was cytotoxic. To attempt to reconcile the differences in these observed effects of dSir2 on Drosophila life span, we hypothesized that a critical level of dSir2 may be necessary to mediate life span extension. Using approaches that allow us to titrate dSir2 expression, we describe here a strong dose-dependent effect of dSir2 on life span. Using the two transgenic dSir2 lines that were reported not to extend life span, we are able to show significant life span extension when dSir2 expression is induced between 2 and 5-fold. However, higher levels decrease life span and can induce cellular toxicity, manifested by increased expression of the JNK-signaling molecule Puc phosphatase and induction of dnaJ-H. Our results help to resolve the apparently conflicting reports by demonstrating that the effects of increased dSir2 expression on life span in Drosophila are dependent upon dSir2 dosage.
Sir2是蛋白质酰基化酶沉默调节蛋白家族的一员,可使许多蛋白质中的赖氨酸残基去乙酰化,并与多种模式生物的寿命延长有关。最近的研究对Sir2在果蝇寿命方面的积极作用提出了质疑。几项研究表明,果蝇Sir2同源物(dSir2)表达增加可延长寿命,而其他研究则报告其对寿命没有影响,或表明dSir2表达增加具有细胞毒性。为了试图调和这些观察到的dSir2对果蝇寿命影响的差异,我们假设dSir2的关键水平可能是介导寿命延长所必需的。通过使用能够滴定dSir2表达的方法,我们在此描述了dSir2对寿命的强烈剂量依赖性效应。使用据报道不会延长寿命的两种转基因dSir2品系,当dSir2表达诱导增加2至5倍时,我们能够显示出显著的寿命延长。然而,更高的水平会缩短寿命并可诱导细胞毒性,表现为JNK信号分子Puc磷酸酶表达增加和dnaJ-H的诱导。我们的结果通过证明dSir2表达增加对果蝇寿命的影响取决于dSir2剂量,有助于解决明显相互矛盾的报道。