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Structure Characterization and Action Mechanism of an Antiaging New Compound from Gastrodia elata Blume

机译:天麻抗衰老新化合物的结构表征和作用机理

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摘要

A new compound, bis(4-hydroxybenzyl)ether mono-β-L-galactopyranoside (>1), was isolated from the rhizome of Gastrodia elata Blume. Its structure was elucidated using extensive spectroscopic analysis, including 1D and 2D NMR, HR-ESI-TOF-MS, and chemical derivatization. Compound >1 extended the replicative lifespan of K6001 and the chronological lifespan of YOM36 yeast strains. To understand the mechanism of action, oxidative stress assessment, reactive oxygen species (ROS) and malondialdehyde (MDA) levels, catalase (CAT) and total glutathione peroxidase (GPx) activity assays, and replicative lifespan assay of sod1, sod2, uth1, and skn7 yeast mutant strains were performed. Results indicated the significant increase in the survival rate of yeast under oxidative stress after treatment with >1. ROS and MDA levels were reduced significantly. Meanwhile, the activity of CAT and GPx was significantly increased. The lifespan of sod1, sod2, uth1, and skn7 mutants of K6001 was not affected by >1. Furthermore, we investigated the gene expression related to longevity after administrating >1. The significant increase of Sir2 and reduction of Uth1 gene expression in the >1-treated group were observed. These results indicated that antioxidative stress played an important role in the antiaging effect of >1; Sir2 and Uth1 genes were involved in antiaging effects of >1.
机译:从天麻的根茎中分离出一种新的化合物双(4-羟基苄基)醚单-β-L-吡喃半乳糖苷(> 1 )。使用广泛的光谱分析,包括1D和2D NMR,HR-ESI-TOF-MS和化学衍生化,阐明了其结构。化合物> 1 延长了K6001的复制寿命,并延长了YOM36酵母菌株的时间寿命。了解作用机理,氧化应激评估,活性氧(ROS)和丙二醛(MDA)水平,过氧化氢酶(CAT)和总谷胱甘肽过氧化物酶(GPx)活性测定以及sod1,sod2,uth1和sod的复制寿命测定进行了skn7酵母突变菌株。结果表明,> 1 处理后酵母在氧化应激下的存活率显着提高。 ROS和MDA水平显着降低。同时,CAT和GPx的活性显着增加。 K6001的sod1,sod2,uth1和skn7突变体的寿命不受> 1 的影响。此外,我们研究了服用> 1 后与寿命有关的基因表达。在> 1 治疗组中,Sir2的显着增加和Uth1基因表达的减少。这些结果表明,抗氧化应激在> 1 的抗衰老作用中起着重要的作用。 Sir2和Uth1基因参与了> 1 的抗衰老作用。

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