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Hormesis of Glyceollin I an Induced Phytoalexin from Soybean on Budding Yeast Chronological Lifespan Extension

机译:大豆诱导的植物抗毒素甘油三醇Ⅰ在萌芽期酵母寿命延长上的兴奋作用

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摘要

Glyceollin I, an induced phytoalexin isolated from soybean, has been reported to have various bioactivities, including anti-bacterial, anti-nematode, anti-fungal, anti-estrogenic and anti-cancer, anti-oxidant, anti-inflammatory, insulin sensitivity enhancing, and attenuation of vascular contractions. Here we show that glyceollin I has hormesis and extends yeast life span at low (nM) doses in a calorie restriction (CR)-dependent manner, while it reduces life span and inhibits yeast cell proliferation at higher (μM) doses. In contrast, the other two isomers (glyceollin II and III) cannot extend yeast life span and only show life span reduction and antiproliferation at higher doses. Our results in anti-aging activity indicate that glyceollin I might be a promising calorie restriction mimetic candidate, and the high content of glyceollins could improve the bioactivity of soybean as functional food ingredients.
机译:据报道,从大豆中分离出的诱导植物抗毒素Glyceollin I具有多种生物活性,包括抗细菌,抗线虫,抗真菌,抗雌激素和抗癌,抗氧化,抗炎,增强胰岛素敏感性以及血管收缩的减弱。在这里,我们显示了糖精蛋白I具有兴奋作用,并以低热量(CR)依赖性方式在低(nM)剂量下延长了酵母的寿命,而在高(μM)剂量下它降低了寿命并抑制了酵母细胞的增殖。相反,其他两种异构体(糖精蛋白II和III)不能延长酵母的寿命,而仅在高剂量时才显示出寿命缩短和抗增殖。我们在抗衰老活性方面的结果表明,甘油I可能是一种有前途的卡路里限制模拟物候选物,而高含量的糖蛋白可以改善大豆作为功能性食品成分的生物活性。

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