Graduate School of Life and Medical Sciences, Doshisha University, Kyoto 610-0394, Japan.
Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya 467-8603, Japan.
Int J Mol Sci. 2021 Feb 26;22(5):2355. doi: 10.3390/ijms22052355.
Polyamines are involved in various biological functions, including cell proliferation, differentiation, gene regulation, etc. Recently, it was found that polyamines exhibit biphasic effects on gene expression: promotion and inhibition at low and high concentrations, respectively. Here, we compared the effects of three naturally occurring tetravalent polyamines, spermine (SPM), thermospermine (TSPM), and -aminopropylspermidine (BSPD). Based on the single DNA observation with fluorescence microscopy together with measurements by atomic force microscopy revealed that these polyamines induce shrinkage and then compaction of DNA molecules, at low and high concentrations, respectively. We also performed the observation to evaluate the effects of these polyamine isomers on the activity of gene expression by adapting a cell-free luciferase assay. Interestingly, the potency of their effects on the DNA conformation and also on the inhibition of gene expression activity indicates the highest for TSPM among spermine isomers. A numerical evaluation of the strength of the interaction of these polyamines with negatively charged double-strand DNA revealed that this ordering of the potency corresponds to the order of the strength of the attractive interaction between phosphate groups of DNA and positively charged amino groups of the polyamines.
多胺参与各种生物功能,包括细胞增殖、分化、基因调控等。最近发现,多胺对基因表达表现出双相作用:低浓度时促进,高浓度时抑制。在这里,我们比较了三种天然存在的四价多胺,精胺(SPM)、热精胺(TSPM)和 - 氨基丙基精脒(BSPD)。基于荧光显微镜的单个 DNA 观察以及原子力显微镜的测量结果表明,这些多胺分别在低浓度和高浓度下诱导 DNA 分子的收缩和随后的凝聚。我们还进行了观察,通过适应无细胞荧光素酶测定来评估这些多胺异构体对基因表达活性的影响。有趣的是,它们对 DNA 构象的影响以及对基因表达活性抑制的效力表明,在精胺异构体中 TSPM 的效力最高。对这些多胺与带负电荷的双链 DNA 之间相互作用强度的数值评估表明,这种效力的排序与 DNA 磷酸基团与多胺正电荷氨基之间吸引力相互作用强度的排序相对应。