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膜脂基质是否是植物药活性皂素作用的关键靶点?

Is the Membrane Lipid Matrix a Key Target for Action of Pharmacologically Active Plant Saponins?

机构信息

Institute of Cytology of Russian Academy of Sciences, 199034 Saint Petersburg, Russia.

出版信息

Int J Mol Sci. 2021 Mar 20;22(6):3167. doi: 10.3390/ijms22063167.

Abstract

This study was focused on the molecular mechanisms of action of saponins and related compounds (sapogenins and alkaloids) on model lipid membranes. Steroids and triterpenes were tested. A systematic analysis of the effects of these chemicals on the physicochemical properties of the lipid bilayers and on the formation and functionality of the reconstituted ion channels induced by antimicrobial agents was performed. It was found that digitonin, tribulosin, and dioscin substantially reduced the boundary potential of the phosphatidylcholine membranes. We concluded that saponins might affect the membrane boundary potential by restructuring the membrane hydration layer. Moreover, an increase in the conductance and lifetime of gramicidin A channels in the presence of tribulosin was due to an alteration in the membrane dipole potential. Differential scanning microcalorimetry data indicated the key role of the sapogenin core structure (steroid or triterpenic) in affecting lipid melting and disordering. We showed that an alteration in pore forming activity of syringomycin E by dioscin might be due to amendments in the lipid packing. We also found that the ability of saponins to disengage the fluorescent marker calcein from lipid vesicles might be also determined by their ability to induce a positive curvature stress.

摘要

本研究专注于皂苷及相关化合物(甾体皂苷和生物碱)在模型脂膜上的作用机制。对甾体和三萜进行了测试。系统分析了这些化学物质对脂质双层物理化学性质的影响,以及它们对由抗菌剂诱导的重组离子通道的形成和功能的影响。结果发现,地奥配基、三萜皂苷元和薯蓣皂苷元显著降低了磷脂酰胆碱膜的界面电势。我们得出结论,皂苷可能通过重构膜水合层来影响膜界面电势。此外,三萜皂苷元的存在增加了短杆菌肽 A 通道的电导和寿命,这是由于膜偶极势的改变。差示扫描微量热法数据表明,甾体或三萜核心结构在影响脂质熔化和无序方面起着关键作用。我们表明,薯蓣皂苷元改变了白霉素 E 的孔形成活性,这可能是由于脂质堆积方式的改变。我们还发现,皂苷使荧光标记物钙黄绿素从脂质体中脱离的能力也可能与其诱导正曲率应力的能力有关。

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