de Wolf F A, Maliepaard M, van Dorsten F, Berghuis I, Nicolay K, de Kruijff B
Institute of Molecular Biology and Medical Biotechnology, University of Utrecht, The Netherlands.
Biochim Biophys Acta. 1990 Nov 14;1096(1):67-80. doi: 10.1016/0925-4439(90)90014-g.
We have characterized the interaction of the antitumor drug doxorubicin with model membranes of the anionic phospholipids dioleoylphosphatidic acid (DOPA), dioleoylphosphatidylserine (DOPS), cardiolipin and dioleoylphosphatidylglycerol (DOPG) as compared to the zwitterionic dioleoylphosphatidylcholine (DOPC) or dioleoylphosphatidylethanolamine (DOPE). The saturating binding levels were: 2.4 (DOPA), 1.3 (cardiolipin), 1.5 (DOPS, DOPG) and 0.02 (DOPC) doxorubicin per lipid phosphorus (mol/mol). The half-saturating free drug concentrations were comparable for DOPA, cardiolipin, DOPS and DOPG: 20, 16, 35 and 18 microM, respectively. Doxorubicin fluorescence revealed the simultaneous existence of at least two populations of bound drug in the various anionic phospholipids: (1) fluorescent molecules with chromophores that reside between the lipid molecules and (2) above 0.01-0.02 doxorubicin bound per lipid phosphorus: non-fluorescent drug-stacks that are closer to the aqueous phase than the fluorescent molecules. Small-angle X-ray scattering indicated that doxorubicin can reorganize anionic phospholipid dispersions into closely-packed multilamellar structures. Addition of the drug caused leakage of entrapped 6-carboxyfluorescein. Neither 2H-NMR on [2-2H]serine-labelled DOPS nor 31P-NMR revealed any significant effect of doxorubicin on headgroup conformation, but 2H-NMR on di[11,11-2H2]oleoyl-labelled phospholipids showed that the drug had a strong acyl chain-disordering effect on anionic phospholipids. 2H-NMR relaxation measurements indicated that the drug immobilized the headgroups and acyl chains of anionic phospholipids. The implications of these observations for the cellular activity of the drug are indicated.
我们已经描述了抗肿瘤药物阿霉素与阴离子磷脂二油酰磷脂酸(DOPA)、二油酰磷脂丝氨酸(DOPS)、心磷脂和二油酰磷脂甘油(DOPG)的模型膜之间的相互作用,并与两性离子的二油酰磷脂酰胆碱(DOPC)或二油酰磷脂酰乙醇胺(DOPE)进行了比较。饱和结合水平为:每脂质磷(mol/mol)2.4(DOPA)、1.3(心磷脂)、1.5(DOPS、DOPG)和0.02(DOPC)阿霉素。对于DOPA、心磷脂、DOPS和DOPG,半饱和游离药物浓度相当:分别为20、16、35和18 microM。阿霉素荧光显示,在各种阴离子磷脂中至少同时存在两种结合药物群体:(1)发色团位于脂质分子之间的荧光分子,以及(2)每脂质磷结合超过0.01 - 0.02阿霉素时:比荧光分子更靠近水相的非荧光药物堆积物。小角X射线散射表明,阿霉素可将阴离子磷脂分散体重新组织成紧密堆积的多层结构。添加药物导致包封的6 - 羧基荧光素泄漏。对[2 - 2H]丝氨酸标记的DOPS进行的2H - NMR以及31P - NMR均未显示阿霉素对头基团构象有任何显著影响,但对二[11,11 - 2H2]油酰标记的磷脂进行的2H - NMR表明,该药物对阴离子磷脂具有强烈的酰基链无序化作用。2H - NMR弛豫测量表明,该药物使阴离子磷脂的心基团和酰基链固定化。文中指出了这些观察结果对该药物细胞活性的影响。