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阿霉素对含心磷脂的模型膜和线粒体膜脂质多态性的影响。

Effects of adriamycin on lipid polymorphism in cardiolipin-containing model and mitochondrial membranes.

作者信息

Nicolay K, van der Neut R, Fok J J, de Kruijff B

出版信息

Biochim Biophys Acta. 1985 Sep 25;819(1):55-65. doi: 10.1016/0005-2736(85)90195-6.

Abstract

The effects of the anti-tumor drug adriamycin on lipid polymorphism in cardiolipin-containing model membranes and in isolated inner mitochondrial membranes has been examined by 31P-NMR. Adriamycin binding does not affect the macroscopic structure or local order in the phosphate region of cardiolipin liposomes. In cardiolipin liposomes and in cardiolipin-phosphatidylcholine (1:1) liposomes, the drug inhibits the ability of Ca2+ to induce the hexagonal HII phase. Adriamycin interaction with both dioleoylphosphatidylethanolamine-cardiolipin (2:1) and dioleoylphosphatidylethanolamine-phosphatidylserine (1:1) liposomes results in structural phase separation into a liquid-crystalline hexagonal HII phase for the phosphatidylethanolamine and a liquid-crystalline lamellar phase for the negatively charged phospholipid. Combined high-resolution 31P-NMR, electron microscopy and light scattering studies reveal the prominent fusion capacity of adriamycin towards cardiolipin-phosphatidylcholine small unilamellar vesicles. Addition of Ca2+ to total rat liver inner mitochondrial membrane lipids, dispersed in excess buffer, results in hexagonal HII formation for part of the phospholipids. By contrast, the original bilayer structure is completely conserved when the above experiment is performed in the presence of adriamycin. 31P-NMR spectra of isolated inner mitochondrial membranes are indicative of a bilayer organization for the majority of the phospholipids. Approximately 15% of the signal intensity originates from phospholipids which experience isotropic motion. Adriamycin addition almost completely eliminates the latter spectral component. In the absence of adriamycin, Ca2+ addition greatly increases the percentage of the phospholipids giving rise to an isotropic signal possibly indicating the formation of non-lamellar lipid structures. Adriamycin which specifically binds to cardiolipin (K. Nicolay et al. (1984) Biochim. Biophys. Acta 778, 359-371) completely blocks the Ca2+-induced structural reorganization of the lipids in this membrane.

摘要

通过31P-NMR研究了抗肿瘤药物阿霉素对含心磷脂的模型膜和分离的线粒体内膜中脂质多态性的影响。阿霉素结合并不影响心磷脂脂质体磷酸盐区域的宏观结构或局部有序性。在心磷脂脂质体和心磷脂-磷脂酰胆碱(1:1)脂质体中,该药物抑制Ca2+诱导六方HII相的能力。阿霉素与二油酰磷脂酰乙醇胺-心磷脂(2:1)和二油酰磷脂酰乙醇胺-磷脂酰丝氨酸(1:1)脂质体相互作用,导致结构相分离,形成磷脂酰乙醇胺的液晶六方HII相和带负电荷磷脂的液晶片层相。结合高分辨率31P-NMR、电子显微镜和光散射研究揭示了阿霉素对心磷脂-磷脂酰胆碱小单层囊泡具有显著的融合能力。向分散在过量缓冲液中的大鼠肝脏线粒体内膜总脂质中添加Ca2+,会使部分磷脂形成六方HII相。相比之下,在阿霉素存在下进行上述实验时,原始的双层结构完全得以保留。分离的线粒体内膜的31P-NMR光谱表明,大多数磷脂呈双层结构。约15%的信号强度源自经历各向同性运动的磷脂。添加阿霉素几乎完全消除了后一种光谱成分。在没有阿霉素的情况下,添加Ca2+会大大增加产生各向同性信号的磷脂百分比,这可能表明形成了非片层脂质结构。特异性结合心磷脂的阿霉素(K. Nicolay等人,(1984年)《生物化学与生物物理学报》778,359 - 371)完全阻断了Ca2+诱导的该膜中脂质的结构重组。

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