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Xenohormetic and anti-aging activity of secoiridoid polyphenols present in extra virgin olive oil

机译:特级初榨橄榄油中存在的类secrididoid多酚的异种雄激素和抗衰老活性

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摘要

Aging can be viewed as a quasi-programmed phenomenon driven by the overactivation of the nutrient-sensing mTOR gerogene. mTOR-driven aging can be triggered or accelerated by a decline or loss of responsiveness to activation of the energy-sensing protein AMPK, a critical gerosuppressor of mTOR. The occurrence of age-related diseases, therefore, reflects the synergistic interaction between our evolutionary path to sedentarism, which chronically increases a number of mTOR activating gero-promoters (e.g., food, growth factors, cytokines and insulin) and the “defective design” of central metabolic integrators such as mTOR and AMPK. Our laboratories at the Bioactive Food Component Platform in Spain have initiated a systematic approach to molecularly elucidate and clinically explore whether the “xenohormesis hypothesis,” which states that stress-induced synthesis of plant polyphenols and many other phytochemicals provides an environmental chemical signature that upregulates stress-resistance pathways in plant consumers, can be explained in terms of the reactivity of the AMPK/mTOR-axis to so-called xenohormetins. Here, we explore the AMPK/mTOR-xenohormetic nature of complex polyphenols naturally present in extra virgin olive oil (EVOO), a pivotal component of the Mediterranean style diet that has been repeatedly associated with a reduction in age-related morbid conditions and longer life expectancy. Using crude EVOO phenolic extracts highly enriched in the secoiridoids oleuropein aglycon and decarboxymethyl oleuropein aglycon, we show for the first time that (1) the anticancer activity of EVOO secoiridoids is related to the activation of anti-aging/cellular stress-like gene signatures, including endoplasmic reticulum (ER) stress and the unfolded protein response, spermidine and polyamine metabolism, sirtuin-1 (SIRT1) and NRF2 signaling; (2) EVOO secoiridoids activate AMPK and suppress crucial genes involved in the Warburg effect and the self-renewal capacity of “immortal” cancer stem cells; (3) EVOO secoiridoids prevent age-related changes in the cell size, morphological heterogeneity, arrayed cell arrangement and senescence-associated β-galactosidase staining of normal diploid human fibroblasts at the end of their proliferative lifespans. EVOO secoiridoids, which provide an effective defense against plant attack by herbivores and pathogens, are bona fide xenohormetins that are able to activate the gerosuppressor AMPK and trigger numerous resveratrol-like anti-aging transcriptomic signatures. As such, EVOO secoiridoids constitute a new family of plant-produced gerosuppressant agents that molecularly “repair” the aimless (and harmful) AMPK/mTOR-driven quasi-program that leads to aging and aging-related diseases, including cancer.
机译:可以将衰老视为由营养敏感的mTOR遗传基因过活化导致的准程序化现象。 mTOR驱动的衰老可以由对能量敏感蛋白AMPK(mTOR的关键基因抑制剂)的激活的响应性降低或丧失来触发或加速。因此,与年龄有关的疾病的发生反映了我们久坐不动的进化途径之间的协同相互作用,这种相互作用会长期增加许多激活mTOR的促生长因子(例如食物,生长因子,细胞因子和胰岛素)和“缺陷设计”。诸如mTOR和AMPK的中央代谢积分器。我们位于西班牙的生物活性食品成分平台上的实验室已启动了系统的分子阐明方法,并在临床上探索了“异种激素假说”是否表明应力诱导的植物多酚和许多其他植物化学物质的合成提供了上调压力的环境化学特征。植物消费者中的抗性途径可以用AMPK / mTOR轴对所谓的异种激素的反应性来解释。在这里,我们探讨了特级初榨橄榄油(EVOO)中天然存在的复杂多酚的AMPK / mTOR-异激素性质,这是地中海式饮食的重要组成部分,已多次与减少与年龄有关的病态状况和延长寿命相关预期。我们使用高度富含secoiridoids橄榄苦参苷苷元和去羧甲基oleuropein苷元的粗EVOO酚类提取物,首次显示(1)EVOO secoiridoids的抗癌活性与抗衰老/细胞应激样基因签名的激活有关,包括内质网(ER)应激和未折叠的蛋白质反应,亚精胺和多胺代谢,sirtuin-1(SIRT1)和NRF2信号传导; (2)EVOO类蛇形素激活AMPK并抑制与Warburg效应和“永生”癌症干细胞的自我更新能力有关的关键基因; (3)EVOO类拟南芥在其正常寿命的增殖期结束时,可防止年龄相关的细胞大小变化,形态异质性,排列的细胞排列以及衰老相关的β-半乳糖苷酶染色。 EVOO secridridoids是一种有效的抗草食动物和病原体植物侵袭的防御素,是真正的异种激素,能够激活gerosuppressor AMPK并触发许多白藜芦醇样的抗衰老转录组特征。因此,EVOO类环孢菌素构成了植物产生的基因抑制剂的新家族,其分子“修复”了无目标的(有害的)AMPK / mTOR驱动的准程序,该程序导致衰老和与衰老相关的疾病,包括癌症。

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