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Loco signaling pathway in longevity

机译:长寿的机车信号通路

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摘要

Despite the various roles of regulator of G protein signaling (RGS) protein in the G protein signaling pathway that have been defined, the function of RGS has not been characterized in longevity signaling pathways. We found that reduced expression of Loco, a Drosophila RGS protein, resulted in a longer lifespan of flies with stronger resistance to stress, higher MnSOD activity and increased fat content. In contrast, overexpression of the loco gene shortened the fly lifespan significantly, lowered stress resistance and reduced fat content, also indicating that the RGS domain containing GTPase-activating protein (GAP) activity is related to the regulation of longevity. Interestingly, expressional changes of yeast RGS2 and rat RGS14, homologs to the fly Loco, also affected oxidative stress resistance and longevity in the respective species. It is known that Loco inactivates inhibitory Gαi•GTP protein to reduce activity of adenylate cyclase (AC) and RGS14 interacts with activated H-Ras and Raf-1 kinases, which subsequently inhibits ERK phosphorylation. We propose that Loco/RGS14 protein may regulate stress resistance and longevity as an activator in AC-cAMP-PKA pathway and/or as a molecular scaffold that sequesters active Ras and Raf from Ras•GTP-Raf-MEK-ERK signaling pathway. Consistently, our data showed that downregulation of Loco significantly diminishes cAMP amounts and increases p-ERK levels with higher resistance to the oxidative stress.
机译:尽管已定义了G蛋白信号传导途径中G蛋白信号传导(RGS)调节剂的各种作用,但长寿信号传导途径尚未表征RGS的功能。我们发现果蝇RGS蛋白Loco的表达降低,导致果蝇的寿命更长,对压力的抵抗力更强,MnSOD活性更高,脂肪含量更高。相反,loco基因的过表达显着缩短了苍蝇的寿命,降低了抗逆性并降低了脂肪含量,也表明含有GTPase激活蛋白(GAP)活性的RGS结构域与长寿的调节有关。有趣的是,与蝇Loco同源的酵母RGS2和大鼠RGS14的表达变化也影响了各个物种的抗氧化应激性和寿命。已知Loco使抑制性Gαi•GTP蛋白失活,以降低腺苷酸环化酶(AC)的活性,RGS14与活化的H-Ras和Raf-1激酶相互作用,随后抑制ERK磷酸化。我们建议Loco / RGS14蛋白可能作为AC-cAMP-PKA途径中的活化剂和/或从Ras•GTP-Raf-MEK-ERK信号途径中隔离活性Ras和Raf的分子支架,调节抗逆性和寿命。一致地,我们的数据表明Loco的下调显着减少了cAMP的含量并增加了p-ERK的水平,同时对氧化应激具有更高的抵抗力。

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