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丹参酮可延长芽殖酵母酿酒酵母的时序寿命。

Tanshinones extend chronological lifespan in budding yeast Saccharomyces cerevisiae.

作者信息

Wu Ziyun, Song Lixia, Liu Shao Quan, Huang Dejian

机构信息

Food Science and Technology Programme, Department of Chemistry, National University of Singapore, Science Drive 3, Singapore, 117543, Republic of Singapore.

出版信息

Appl Microbiol Biotechnol. 2014 Oct;98(20):8617-28. doi: 10.1007/s00253-014-5890-5. Epub 2014 Jun 28.

Abstract

Natural products with anti-aging property have drawn great attention recently but examples of such compounds are exceedingly scarce. By applying a high-throughput assay based on yeast chronological lifespan measurement, we screened the anti-aging activity of 144 botanical materials and found that dried roots of Salvia miltiorrhiza Bunge have significant anti-aging activity. Tanshinones isolated from the plant including cryptotanshione, tanshinone I, and tanshinone IIa, are the active components. Among them, cryptotanshinone can greatly extend the budding yeast Saccharomyces cerevisiae chronological lifespan (up to 2.5 times) in a dose- and the-time-of-addition-dependent manner at nanomolar concentrations without disruption of cell growth. We demonstrate that cryptotanshinone prolong chronological lifespan via a nutrient-dependent regime, especially essential amino acid sensing, and three conserved protein kinases Tor1, Sch9, and Gcn2 are required for cryptotanshinone-induced lifespan extension. In addition, cryptotanshinone significantly increases the lifespan of SOD2-deleted mutants. Altogether, those data suggest that cryptotanshinone might be involved in the regulation of, Tor1, Sch9, Gcn2, and Sod2, these highly conserved longevity proteins modulated by nutrients from yeast to humans.

摘要

具有抗衰老特性的天然产物近来备受关注,但这类化合物的实例极为稀少。通过应用基于酵母时序寿命测量的高通量检测方法,我们筛选了144种植物材料的抗衰老活性,发现丹参干燥根具有显著的抗衰老活性。从该植物中分离出的丹参酮,包括隐丹参酮、丹参酮I和丹参酮IIa,是其活性成分。其中,隐丹参酮能够以纳摩尔浓度,在依赖剂量和添加时间的方式下,极大地延长出芽酵母酿酒酵母的时序寿命(延长至2.5倍),且不干扰细胞生长。我们证明,隐丹参酮通过依赖营养的机制延长时序寿命,尤其是通过感知必需氨基酸,并且隐丹参酮诱导的寿命延长需要三种保守的蛋白激酶Tor1、Sch9和Gcn2。此外,隐丹参酮显著延长了超氧化物歧化酶2(SOD2)缺失突变体的寿命。总之,这些数据表明,隐丹参酮可能参与了Tor1、Sch9、Gcn2和Sod2的调控,这些高度保守的长寿蛋白受从酵母到人类的营养物质调节。

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