Dubielecka Patrycja M, Trusz Anna, Diakowski Witold, Grzybek Michał, Chorzalska Anna, Jaźwiec Bozena, Lisowski Marek, Jezierski Adam, Sikorski Aleksander F
Institute of Biochemistry and Molecular Biology, University of Wrocław, Wrocław, Poland.
Mol Membr Biol. 2006 May-Jun;23(3):235-43. doi: 10.1080/09687860600601643.
Understanding drug-membrane and drug-membrane protein interactions would be a crucial step towards understanding the action and biological properties of anthracyclines, as the cell membrane with its integral and peripheral proteins is the first barrier encountered by these drugs. In this paper, we briefly describe mitoxantrone-monolayer and mitoxantrone-bilayer interactions, focusing on the effect of mitoxantrone on the interactions between erythroid or nonerythroid spectrin with phosphatidylethanolamine-enriched mono- and bilayers. We found that mitoxantrone markedly modifies the interaction of erythroid and nonerythroid spectrins with phosphatidylethanolamine/phosphatidylcholine (PE/PC) monolayers. The change in delta pi induced by spectrins is several-fold larger in the presence of 72 nM mitoxantrone than in its absence: spectrin/mitoxantrone complexes induced a strong compression of the monolayer. Spin-labelling experiments showed that spectrin/mitoxantrone complexes caused significant changes in the order parameter measured using a 5'-doxyl stearate probe in the bilayer, but they practically did not affect the mobility of 16'-doxyl stearate. These results indicate close-to-surface interactions/penetrations without significant effect on the mid-region of the hydrophobic core of the bilayer. The obtained apparent equilibrium dissociation constants indicated relatively similar mitoxantrone-phospholipid and mitoxantrone-spectrin (erythroid and nonerythroid) binding affinities. These results might in part, explain the effect of mitoxantrone on spectrin distribution in the living cells.
了解药物与膜及药物与膜蛋白的相互作用对于理解蒽环类药物的作用和生物学特性至关重要,因为带有整合蛋白和外周蛋白的细胞膜是这些药物遇到的第一道屏障。在本文中,我们简要描述了米托蒽醌与单层膜和米托蒽醌与双层膜的相互作用,重点关注米托蒽醌对红系或非红系血影蛋白与富含磷脂酰乙醇胺的单层和双层膜之间相互作用的影响。我们发现米托蒽醌显著改变了红系和非红系血影蛋白与磷脂酰乙醇胺/磷脂酰胆碱(PE/PC)单层膜的相互作用。在存在72 nM米托蒽醌的情况下,血影蛋白诱导的Δπ变化比不存在时大几倍:血影蛋白/米托蒽醌复合物导致单层膜强烈压缩。自旋标记实验表明,血影蛋白/米托蒽醌复合物使使用5'-硬脂酰氧基硬脂酸酯探针在双层膜中测量的序参数发生了显著变化,但实际上对16'-硬脂酰氧基硬脂酸酯的流动性没有影响。这些结果表明存在接近表面的相互作用/渗透,而对双层膜疏水核心的中间区域没有显著影响。获得的表观平衡解离常数表明米托蒽醌与磷脂和米托蒽醌与血影蛋白(红系和非红系)的结合亲和力相对相似。这些结果可能部分解释了米托蒽醌对活细胞中血影蛋白分布的影响。