首页> 美国卫生研究院文献>Aging (Albany NY) >The age- and sex-specific decline of the 20s proteasome and the Nrf2/CncC signal transduction pathway in adaption and resistance to oxidative stress in Drosophila melanogaster
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The age- and sex-specific decline of the 20s proteasome and the Nrf2/CncC signal transduction pathway in adaption and resistance to oxidative stress in Drosophila melanogaster

机译:果蝇20s蛋白酶体的年龄和性别特异性下降以及Nrf2 / CncC信号转导通路对果蝇的适应性和对氧化应激的抗性

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摘要

Hallmarks of aging include loss of protein homeostasis and dysregulation of stress-adaptive pathways. Loss of adaptive homeostasis, increases accumulation of DNA, protein, and lipid damage. During acute stress, the Cnc-C (Drosophila Nrf2 orthologue) transcriptionally-regulated 20S proteasome degrades damaged proteins in an ATP-independent manner. Exposure to very low, non-toxic, signaling concentrations of the redox-signaling agent hydrogen peroxide (H2O2) cause adaptive increases in the de novo expression and proteolytic activity/capacity of the 20S proteasome in female D. melanogaster (fruit-flies). Female 20S proteasome induction was accompanied by increased tolerance to a subsequent normally toxic but sub-lethal amount of H2O2, and blocking adaptive increases in proteasome expression also prevented full adaptation. We find, however, that this adaptive response is both sex- and age-dependent. Both increased proteasome expression and activity, and increased oxidative-stress resistance, in female flies, were lost with age. In contrast, male flies exhibited no H2O2 adaptation, irrespective of age. Furthermore, aging caused a generalized increase in basal 20S proteasome expression, but proteolytic activity and adaptation were both compromised. Finally, continual knockdown of Keep1 (the cytosolic inhibitor of Cnc-C) in adults resulted in older flies with greater stress resistance than their age-matched controls, but who still exhibited an age-associated loss of adaptive homeostasis.
机译:衰老的标志包括蛋白质体内平衡的丧失和应激适应途径的失调。失去适应性稳态,增加DNA,蛋白质和脂质损伤的积累。在急性应激期间,Cnc-C(果蝇Nrf2直系同源物)转录调控的20S蛋白酶体以不依赖ATP的方式降解受损的蛋白质。暴露于极低的无毒信号浓度的氧化还原信号传递剂过氧化氢(H2O2)会导致雌性黑腹果蝇(果蝇)中20S蛋白酶体的新生表达和蛋白水解活性/能力的适应性增加。女性20S蛋白酶体诱导伴随着对随后的通常有毒但低于致死量的H2O2的耐受性增加,并且阻止蛋白酶体表达的适应性增加也阻止了完全适应。然而,我们发现这种适应性反应是性别和年龄依赖性的。随着年龄的增长,雌蝇中的蛋白酶体表达和活性均增加,并且抗氧化应激性均增加。相反,不论年龄大小,雄蝇都没有表现出对H2O2的适应性。此外,衰老引起基础20S蛋白酶体表达的普遍增加,但蛋白水解活性和适应性均受到损害。最后,在成年人中持续敲除Keep1(Cnc-C的胞质抑制剂)可导致年长的果蝇比其年龄匹配的对照组具有更大的抗逆性,但它们仍表现出与年龄相关的适应性稳态丧失。

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