Pawelczak Paweł, Fedoruk-Wyszomirska Agnieszka, Wyszko Eliza
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704 Poznań, Poland.
Antioxidants (Basel). 2022 Apr 26;11(5):850. doi: 10.3390/antiox11050850.
Small compounds are a large group of chemicals characterized by various biological properties. Some of them also have antiaging potential, which is mainly attributed to their antioxidant activity. In this study, we examined the antiaging effect of 4--Furfurylcytosine (FC), a cytosine derivative belonging to a group of small compounds, on budding yeast We chose this yeast model as it is known to contain multiple conserved genes and mechanisms identical to that of humans and has been proven to be successful in aging research. The chronological lifespan assay performed in the study revealed that FC improved the viability of yeast cells in a concentration-dependent manner. Furthermore, enhanced mitochondrial activity, together with reduced intracellular ROS level, was observed in FC-treated yeast cells. The gene expression analysis confirmed that FC treatment resulted in the restriction of the TORC1 signaling pathway. These results indicate that FC has antiaging properties.
小分子化合物是一大类具有各种生物学特性的化学物质。其中一些还具有抗衰老潜力,这主要归因于它们的抗氧化活性。在本研究中,我们检测了4-糠基胞嘧啶(FC)——一种属于小分子化合物组的胞嘧啶衍生物——对出芽酵母的抗衰老作用。我们选择这种酵母模型是因为已知它含有多个与人类相同的保守基因和机制,并且已被证明在衰老研究中是成功的。该研究中进行的时序寿命测定表明,FC以浓度依赖的方式提高了酵母细胞的活力。此外,在经FC处理的酵母细胞中观察到线粒体活性增强,同时细胞内活性氧水平降低。基因表达分析证实,FC处理导致TORC1信号通路受到限制。这些结果表明FC具有抗衰老特性。