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线虫中调控寿命的daf-2基因网络可调节抗氧化应激能力及锰超氧化物歧化酶基因的表达。

The daf-2 gene network for longevity regulates oxidative stress resistance and Mn-superoxide dismutase gene expression in Caenorhabditis elegans.

作者信息

Honda Y, Honda S

机构信息

Tokyo Metropolitan Institute of Gerontology, Tokyo 173-0015, Japan.

出版信息

FASEB J. 1999 Aug;13(11):1385-93.

Abstract

Longevity is regulated by the daf-2 gene network in Caenorhabditis elegans. Mutations in the daf-2 gene, which encodes a member of the insulin receptor family, confer the life extension (Age) phenotype and the constitutive dauer (a growth-arrested larval form specialized for dispersal) formation phenotype. The Age phenotype is mutually potentiated by two life extension mutations in the daf-2 gene and the clk-1 gene, a homologue of yeast CAT5/COQ7 known to regulate ubiquinone biosynthesis. In this study, we demonstrated that the daf-2 mutation also conferred an oxidative stress resistance (Oxr) phenotype, which was also enhanced by the clk-1 mutation. Similar to the Age phenotype, the Oxr phenotype was regulated by the genetic pathway of insulin-like signaling from daf-2 to the daf-16 gene, a homologue of the HNF-3/forkhead transcription factor. These findings led us to examine whether the insulin-like signaling pathway regulates the gene expression of antioxidant defense enzymes. We found that the mRNA level of the sod-3 gene, which encodes Mn-superoxide dismutase (SOD), was much higher in daf-2 mutants than in the wild type. Moreover, the increased sod-3 gene expression phenotype is regulated by the insulin-like signaling pathway. Although the clk-1 mutant itself did not display Oxr and the increased sod-3 expression phenotypes, the clk-1 mutation enhanced them in the daf-2 mutant, suggesting that clk-1 is involved in longevity in two ways: clk-1 composes the original clk-1 longevity program and the daf-2 longevity program. These observations suggest that the daf-2 gene network controls longevity by regulating the Mn-SOD-associated antioxidant defense system. This system appears to play a role in efficient life maintenance at the dauer stage.

摘要

秀丽隐杆线虫的寿命受daf - 2基因网络调控。daf - 2基因发生突变,该基因编码胰岛素受体家族的一个成员,会赋予寿命延长(Age)表型和组成型滞育(一种专门用于扩散的生长停滞幼虫形态)形成表型。daf - 2基因的两个寿命延长突变与clk - 1基因的突变相互增强Age表型,clk - 1基因是酵母CAT5/COQ7的同源物,已知其参与泛醌生物合成的调控。在本研究中,我们证明daf - 2突变还赋予了氧化应激抗性(Oxr)表型,clk - 1突变也增强了该表型。与Age表型类似,Oxr表型受从daf - 2到daf - 16基因的胰岛素样信号遗传途径调控,daf - 16基因是HNF - 3/叉头转录因子的同源物。这些发现促使我们研究胰岛素样信号通路是否调控抗氧化防御酶的基因表达。我们发现,编码锰超氧化物歧化酶(SOD)的sod - 3基因的mRNA水平在daf - 2突变体中比野生型高得多。此外,sod - 3基因表达增加的表型受胰岛素样信号通路调控。尽管clk - 1突变体本身未表现出Oxr和sod - 3表达增加的表型,但clk - 1突变在daf - 2突变体中增强了这些表型,表明clk - 1以两种方式参与寿命调控:clk - 1构成原始的clk - 1寿命程序和daf - 2寿命程序。这些观察结果表明,daf - 2基因网络通过调控与锰超氧化物歧化酶相关的抗氧化防御系统来控制寿命。该系统似乎在滞育阶段的高效生命维持中发挥作用。

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