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首页> 外文期刊>Aging Cell >Regulation of longevity by regulator of G-protein signaling protein, Loco
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Regulation of longevity by regulator of G-protein signaling protein, Loco

机译:通过调节G蛋白信号蛋白Loco调节寿命

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摘要

Regulator of G-protein signaling (RGS) proteins contribute to G-protein signaling pathways as activators or repressors with GTPase-activating protein (GAP) activity. To characterize whether regulation of RGS proteins influences longevity in several species, we measured stress responses and lifespan of RGS-overexpressing and RGS-lacking mutants. Reduced expression of Loco, a RGS protein of Drosophila melanogaster, resulted in a longer lifespan for both male and female flies, also exhibiting stronger resistance to three different stressors (starvation, oxidation, and heat) and higher manganese-containing superoxide dismutase (MnSOD) activity. In addition, this reduction in Loco expression increased fat content and diminished cAMP levels. In contrast, overexpression of both genomic and cDNA loco gene significantly shortened the lifespan with weaker stress resistance and lower fat content. Deletion analysis of the Loco demonstrated that its RGS domain is required for the regulation of longevity. Consistently, when expression of RGS14, mammalian homologue of Loco, was reduced in rat fibroblast cells, the resistance to oxidative stress increased with higher MnSOD expression. The changes of yeast Rgs2 expression, which shares a conserved RGS domain with the fly Loco protein, also altered lifespan and stress resistance in Saccharomyces cerevisiae. Here, we provide the first evidence that RGS proteins with GAP activity affect both stress resistance and longevity in several species.
机译:G蛋白信号转导(RGS)蛋白的调节剂作为具有GTPase激活蛋白(GAP)活性的激活物或阻遏物,有助于G蛋白信号转导途径。为了表征RGS蛋白的调节是否会影响几种物种的寿命,我们测量了RGS过表达和RGS缺失突变体的胁迫响应和寿命。 Loco是果蝇的RGS蛋白,其表达的降低导致雄蝇和雌蝇的寿命更长,并且还表现出对三种不同应激源(饥饿,氧化和高温)的较强抵抗力,并且含锰较高的超氧化物歧化酶(MnSOD)活动。另外,Loco表达的这种降低增加了脂肪含量并降低了cAMP水平。相比之下,基因组和cDNA loco基因的过表达均显着缩短了其寿命,其抗逆性较弱,脂肪含量较低。机车的删除分析表明,其RGS域是调节长寿所必需的。一致地,当大鼠成纤维细胞中RGC14(哺乳动物Loco的同系物)的表达减少时,随着MnSOD表达的增加,对氧化应激的抵抗力也会增加。酵母Rgs2表达的变化与果蝇Loco蛋白共享一个保守的RGS结构域,也改变了酿酒酵母的寿命和抗逆性。在这里,我们提供了第一个证据,即具有GAP活性的RGS蛋白会影响几种物种的抗逆性和寿命。

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