Dubinin Mikhail V, Semenova Alena A, Nedopekina Darya A, Davletshin Eldar V, Spivak Anna Yu, Belosludtsev Konstantin N
Department of Biochemistry, Cell Biology and Microbiology, Mari State University, pl. Lenina 1, 424001 Yoshkar-Ola, Russia.
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Prospekt Oktyabrya 141, 450075 Ufa, Russia.
Membranes (Basel). 2021 May 10;11(5):352. doi: 10.3390/membranes11050352.
This work demonstrates the effects of a newly synthesized conjugate of the plant triterpenoid betulin and the penetrating cation F16 used for mitochondrial targeting. The resulting F16-betulin conjugate revealed a mitochondria-targeted effect, decreasing the mitochondrial potential and inducing superoxide overproduction in rat thymocytes . It has been suggested that this may cause the cytotoxic effect of the conjugate, which significantly exceeds the effectiveness of its precursors, betulin and F16. Using isolated rat liver mitochondria, we found that the F16-betulin conjugate has a surface-active effect on mitochondrial membranes, causing organelle aggregation. This effect of the derivative resulted in a dose-dependent decrease in mitochondrial transmembrane potential, as well as suppression of respiration and oxidative phosphorylation, especially in the case of nicotinamide adenine dinucleotide (NAD)-fueled organelles. In addition, the F16-betulin conjugate caused an increase in HO generation by mitochondria fueled with glutamate and malate. These effects of the derivative can presumably be due to the powerful suppression of the redox activity of complex I of the mitochondrial electron transport chain. The paper discusses how the mitochondria-targeted effects of the F16-betulin conjugate may be related to its cytotoxic effects.
这项工作展示了一种新合成的植物三萜类桦木醇与用于线粒体靶向的穿透性阳离子F16的共轭物的作用。所得的F16-桦木醇共轭物显示出线粒体靶向作用,可降低大鼠胸腺细胞的线粒体电位并诱导超氧阴离子过量产生。有人认为,这可能导致共轭物的细胞毒性作用,该作用明显超过其前体桦木醇和F16的有效性。使用分离的大鼠肝线粒体,我们发现F16-桦木醇共轭物对线粒体膜具有表面活性作用,导致细胞器聚集。该衍生物的这种作用导致线粒体跨膜电位呈剂量依赖性降低,以及呼吸和氧化磷酸化受到抑制,尤其是在以烟酰胺腺嘌呤二核苷酸(NAD)为燃料的细胞器中。此外,F16-桦木醇共轭物使以谷氨酸和苹果酸为燃料的线粒体产生的HO增加。该衍生物的这些作用可能是由于线粒体电子传递链复合体I的氧化还原活性受到强烈抑制。本文讨论了F16-桦木醇共轭物的线粒体靶向作用与其细胞毒性作用之间的关系。