Department of Laboratory Medicine and Pathology, School of Medicine, University of Washington, Box 357470, Seattle, WA, 98195-7470, USA.
Department of Biology and Biotechnology, University of Houston-Clear Lake, Houston, TX, USA.
Geroscience. 2021 Oct;43(5):2595-2609. doi: 10.1007/s11357-021-00418-x. Epub 2021 Jul 23.
As the molecular mechanisms of biological aging become better understood, there is growing interest in identifying interventions that target those mechanisms to promote extended health and longevity. The budding yeast Saccharomyces cerevisiae has served as a premier model organism for identifying genetic and molecular factors that modulate cellular aging and is a powerful system in which to evaluate candidate longevity interventions. Here we screened a collection of natural products and natural product mixtures for effects on the growth rate, mTOR-mediated growth inhibition, and replicative lifespan. No mTOR inhibitory activity was detected, but several of the treatments affected growth rate and lifespan. The strongest lifespan shortening effects were observed for green tea extract and berberine. The most robust lifespan extension was detected from an extract of Pterocarpus marsupium and another mixture containing Pterocarpus marsupium extract. These findings illustrate the utility of the yeast system for longevity intervention discovery and identify Pterocarpus marsupium extract as a potentially fruitful longevity intervention for testing in higher eukaryotes.
随着生物衰老的分子机制越来越被理解,人们越来越感兴趣于确定那些可以靶向这些机制以促进延长健康和长寿的干预措施。 budding yeast Saccharomyces cerevisiae 已成为鉴定调节细胞衰老的遗传和分子因素的主要模式生物,并且是评估候选长寿干预措施的强大系统。在这里,我们筛选了一系列天然产物和天然产物混合物,以观察它们对生长速度、mTOR 介导的生长抑制和复制寿命的影响。没有检测到 mTOR 抑制活性,但有几种处理方法影响了生长速度和寿命。绿茶提取物和黄连素对寿命的缩短影响最大。从 Pterocarpus marsupium 的提取物和另一种含有 Pterocarpus marsupium 提取物的混合物中检测到最显著的寿命延长。这些发现说明了酵母系统在长寿干预发现中的实用性,并确定 Pterocarpus marsupium 提取物作为一种有前途的长寿干预措施,可在高等真核生物中进行测试。