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阿霉素神经毒性中膜流动性效应及酶活性改变的评估

Evaluation of membrane fluidity effects and enzyme activities alterations in adriamycin neurotoxicity.

作者信息

Deliconstantinos G, Kopeikina-Tsiboukidou L, Villiotou V

出版信息

Biochem Pharmacol. 1987 Apr 1;36(7):1153-61. doi: 10.1016/0006-2952(87)90426-6.

Abstract

Adriamycin (ADR) increased the lipid fluidity of dog brain synaptosomal plasma membranes (SPM) labeled with 1,6-diphenyl-1,3,5-hexatriene (DPH), as indicated by the steady-state fluorescence anisotropy [(ro/r)-1]-1. Arrhenius-type plots of [(ro/r)-1]-1 indicated that the lipid phase separation of the membrane at 23.3 +/- 1.2 degrees was perturbed by ADR such that the temperature was reduced to 16.2 +/- 1.1 degrees. Arrhenius plots of (Na+ + K+)-stimulated ATPase activity exhibited a break point at 22.8 +/- 1.1 degrees in control SPM which was reduced to 15.8 +/- 1.0 degrees in ADR treated SPM, suggesting differences in the interaction of (Na+ + K+)-stimulated ATPase with lipids between ADR treated and untreated SPM. (Na+ + K+)-stimulated ATPase and Ca2+-stimulated ATPase activities were increased at a concentration range 10(-18)-10(-15) M of ADR; higher concentrations (up to 10(-7) M), however, led to a progressive inhibition of the enzyme activities. The allosteric properties of SPM-bound (Na+ + K+)-stimulated ATPase by fluoride (F-) (as reflected by changes in the Hill coefficient) were modulated by ADR whereas those of SPM-bound acetylcholinesterase remained unaffected. We propose that ADR achieves these effects through asymmetric perturbations of the membrane lipid structure and that changes in membrane fluidity may be an early key event in ADR induced neurotoxicity.

摘要

阿霉素(ADR)增加了用1,6-二苯基-1,3,5-己三烯(DPH)标记的犬脑突触体细胞膜(SPM)的脂质流动性,稳态荧光各向异性[(ro/r)-1]-1表明了这一点。[(ro/r)-1]-1的阿累尼乌斯型图表明,在23.3±1.2℃时膜的脂质相分离受到ADR的干扰,使得温度降至16.2±1.1℃。(Na++K+)刺激的ATP酶活性的阿累尼乌斯图在对照SPM中于22.8±1.1℃处出现一个断点,在ADR处理的SPM中该断点降至15.8±1.0℃,这表明ADR处理和未处理的SPM之间(Na++K+)刺激的ATP酶与脂质相互作用存在差异。在ADR浓度范围为10(-18)-10(-15)M时,(Na++K+)刺激的ATP酶和Ca2+刺激的ATP酶活性增加;然而,更高浓度(高达10(-7)M)会导致酶活性逐渐受到抑制。氟化物(F-)对SPM结合的(Na++K+)刺激的ATP酶的变构性质(如通过希尔系数的变化反映)受到ADR的调节,而SPM结合的乙酰胆碱酯酶的变构性质则不受影响。我们提出,ADR通过对膜脂质结构的不对称扰动实现这些效应,并且膜流动性的变化可能是ADR诱导神经毒性的早期关键事件。

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