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SIN3对于抗逆性至关重要,并调节成年个体的寿命。

SIN3 is critical for stress resistance and modulates adult lifespan.

作者信息

Barnes Valerie L, Bhat Abhineeth, Unnikrishnan Archana, Heydari Ahmad R, Arking Robert, Pile Lori A

机构信息

Department of Biological Sciences, Wayne State University, Detroit, Michigan, 48202, USA.

Department of Nutrition and Food Science Wayne State University, Detroit, Michigan, 48202,USA.

出版信息

Aging (Albany NY). 2014 Aug;6(8):645-60. doi: 10.18632/aging.100684.

Abstract

Coordinate control of gene activity is critical for fitness and longevity of an organism. The SIN3 histone deacetylase (HDAC) complex functions as a transcriptional repressor of many genes. SIN3-regulated genes include those that encode proteins affecting multiple aspects of mitochondrial function, such as energy production and stress responsiveness, important for health maintenance. Here we used Drosophila melanogaster as a model organism to examine the role of SIN3 in the regulation of fitness and longevity. Adult flies with RNA interference (RNAi) induced knockdown expression of Sin3A have reduced climbing ability; an activity that likely requires fully functional mitochondria. Additionally, compared to wild type, adult Sin3A knockdown flies were more sensitive to oxidative stress. Interestingly, media supplementation with the antioxidant glutathione largely restored fly tolerance to oxidative stress. Although Sin3A knockdown flies exhibited decreased longevity compared to wild type, no significant changes in expression of many well-categorized aging genes were observed. We found, however, that Sin3A knockdown corresponded to a significant reduction in expression of genes encoding proteins involved in the de novo synthesis of glutathione. Taken together, the data support a model whereby SIN3 regulates a gene expression program required for proper mitochondrial function and effective stress response during adulthood.

摘要

基因活性的协同控制对于生物体的健康和寿命至关重要。SIN3组蛋白去乙酰化酶(HDAC)复合物作为许多基因的转录抑制因子发挥作用。SIN3调控的基因包括那些编码影响线粒体功能多个方面的蛋白质的基因,如能量产生和应激反应能力,这些对维持健康很重要。在这里,我们以黑腹果蝇作为模式生物来研究SIN3在调节健康和寿命中的作用。通过RNA干扰(RNAi)诱导Sin3A基因敲低表达的成年果蝇攀爬能力下降;而攀爬活动可能需要功能完全正常的线粒体。此外,与野生型相比,成年Sin3A基因敲低的果蝇对氧化应激更敏感。有趣的是,在培养基中添加抗氧化剂谷胱甘肽在很大程度上恢复了果蝇对氧化应激的耐受性。虽然与野生型相比,Sin3A基因敲低的果蝇寿命缩短,但未观察到许多分类明确的衰老相关基因的表达有显著变化。然而,我们发现,Sin3A基因敲低对应于参与谷胱甘肽从头合成的蛋白质编码基因的表达显著降低。综上所述,这些数据支持了一个模型,即SIN3在成年期调节适当的线粒体功能和有效的应激反应所需的基因表达程序。

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