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吗啉基阿霉素类似物和阿霉素对鸡白血病细胞DNA聚合酶α及RNA聚合酶II活性的影响。

Effect of morpholinyladriamycin analogs and adriamycin on the activities of DNA polymerase alpha and RNA polymerase II of chicken leukemia cells.

作者信息

Chuang L F, Chuang R Y, Acton E M, Israel M, Yu M

出版信息

J Pharmacol Exp Ther. 1987 Jul;242(1):372-7.

PMID:2441029
Abstract

The new adriamycin (ADR) derivatives, 3'-deamino-3'-(4"-morpholinyl)adriamycin (MRA) and 3'-deamino-3'-(3"-cyano-4"-morpholinyl)-adriamycin (MRA-CN), were studied, in comparison with ADR, for their inhibitory effects on DNA and RNA syntheses in vitro using isolated DNA and RNA polymerases from both Escherichia coli and chicken (myeloblastosis) leukemia cells. Under standard assay conditions, MRA and ADR demonstrated a similar inhibitory effect on the enzymes, whereas MRA-CN showed a slightly greater inhibitory activity than ADR or MRA at low drug concentrations, but with the inhibitory effect plateauing when drug concentration reached 10 microM. Both the A and B forms of the MRA-CN diastereoisomers were effective as inhibitors. Kinetic studies of the inhibition showed that unlike ADR, MRA-CN inhibition of DNA or RNA synthesis could not be reversed by increasing DNA-template concentration in the reaction mixture. Whereas ADR or MRA relaxed completely 1 microgram of pBR322 supercoiled DNA at a drug concentration of 15 microM, MRA-CN, at 60 microM, produced a mixture of intermediate relaxation forms of the DNA. A complete relaxation was achieved at 300 microM MRA-CN. Both DNA relaxation and fluorescence spectroscopic studies indicated that DNA-drug interactions occurred in the following order: ADR (or MRA) greater than MRA-CN greater than N-trifluoroacetyl-ADR-14-O-hemiadipate (a DNA-nonbinding anthracycline).

摘要

对新型阿霉素(ADR)衍生物3'-脱氨基-3'-(4''-吗啉基)阿霉素(MRA)和3'-脱氨基-3'-(3''-氰基-4''-吗啉基)阿霉素(MRA-CN)进行了研究,并与ADR作比较,利用从大肠杆菌和鸡(成髓细胞性)白血病细胞中分离出的DNA和RNA聚合酶,考察了它们在体外对DNA和RNA合成的抑制作用。在标准测定条件下,MRA和ADR对这些酶表现出相似的抑制作用,而MRA-CN在低药物浓度时显示出比ADR或MRA略强的抑制活性,但当药物浓度达到10 μM时抑制作用趋于平稳。MRA-CN非对映异构体的A和B两种形式均具有有效的抑制作用。抑制作用的动力学研究表明,与ADR不同,MRA-CN对DNA或RNA合成的抑制作用不能通过增加反应混合物中DNA模板浓度来逆转。在药物浓度为15 μM时,ADR或MRA能使1 μg pBR322超螺旋DNA完全松弛,而在60 μM时,MRA-CN产生DNA的中间松弛形式混合物。在300 μM MRA-CN时可实现完全松弛。DNA松弛和荧光光谱研究均表明,DNA与药物的相互作用按以下顺序发生:ADR(或MRA)>MRA-CN>N-三氟乙酰基-ADR-14-O-半己二酸酯(一种不与DNA结合的蒽环类药物)。

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