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在存在偶极修饰剂的情况下,研究多烯大环内酯类抗生素在平面脂质双分子层中的通道形成活性。

Investigation of channel-forming activity of polyene macrolide antibiotics in planar lipid bilayers in the presence of dipole modifiers.

作者信息

Efimova S S, Schagina L V, Ostroumova O S

机构信息

Institute of Cytology, Russian Academy of Sciences, Tikhoretsky Ave., 4, St. Petersburg, 194064, Russia.

出版信息

Acta Naturae. 2014 Oct;6(4):67-79.

Abstract

The role of membrane components, sterols, phospholipids and sphingolipids in the formation and functioning of ion-permeable nanopores formed by antifungal macrolide antibiotics, amphotericin B, nystatin and filipin in planar lipid bilayers was studied. Dipole modifiers, flavonoids and styryl dyes, were used as a tool to study the molecular mechanisms of polyene channel-forming activity. The introduction of dipole modifiers into the membrane bathing solutions was shown to change the conductance of single channels and the steadystate transmembrane current induced by polyene antibiotics in the sterol-containing phospholipid-bilayers. The conductance of single amphotericin B channels was found to depend on the dipole potential of the membrane. The experiments with various phospholipids, sterols, and polyenes led to the assumption that the shape of a phospholipid molecule, the presence of double bonds at the positions 7 and 22 of a sterol molecule, the number of conjugated double bonds, and the presence of an amino sugar in the polyene antibiotic molecule are important factors impacting the stability of polyene-lipid complexes forming ion-permeable pores. Experimental and literature data presented in the paper suggest that the channel-forming activity of polyene antibiotics is also affected by the physicochemical properties of polyene-enriched ordered membrane domains.

摘要

研究了膜成分、甾醇、磷脂和鞘脂在抗真菌大环内酯类抗生素两性霉素B、制霉菌素和菲律宾菌素于平面脂质双分子层中形成的离子通透纳米孔的形成及功能发挥过程中的作用。偶极修饰剂、类黄酮和苯乙烯基染料被用作研究多烯通道形成活性分子机制的工具。研究表明,将偶极修饰剂引入膜浴溶液会改变含甾醇磷脂双分子层中由多烯抗生素诱导的单通道电导和稳态跨膜电流。发现单两性霉素B通道的电导取决于膜的偶极电位。对各种磷脂、甾醇和多烯进行的实验得出如下假设:磷脂分子的形状、甾醇分子7位和22位双键的存在、共轭双键的数量以及多烯抗生素分子中氨基糖的存在是影响形成离子通透孔的多烯 - 脂质复合物稳定性的重要因素。本文给出的实验和文献数据表明,富含多烯的有序膜结构域的物理化学性质也会影响多烯抗生素的通道形成活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b624/4273094/8ee2717d746d/AN20758251-23-067-g001.jpg

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