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蒽环类抗癌药物对解旋酶的抑制作用。

Helicase inhibition by anthracycline anticancer agents.

作者信息

Bachur N R, Yu F, Johnson R, Hickey R, Wu Y, Malkas L

机构信息

Department of Medicine, University of Maryland Cancer Center, Baltimore 21201.

出版信息

Mol Pharmacol. 1992 Jun;41(6):993-8.

PMID:1614415
Abstract

Helicases are essential to both DNA replication and transcription because they separate double-stranded DNA, preparing the single strands for replication or transcription. Because the anti-cancer anthracycline antibiotics stabilize double-stranded DNA primarily by their intercalative binding, we expected the intercalated antibiotics to interfere with helicase action. We examined anthracycline antibiotic effects on SV40 large T antigen helicase activity, using a duplex DNA helicase substrate of 32P-labeled 17-mer annealed to complementary M13mp19(+) circular single-stranded DNA. The T antigen helicase activity was potently inhibited by the anthracycline antibiotics. The T antigen helicase IC50 values for the anthracycline antibiotics were as follows: nogalamycin, 2 x 10(-7) M; daunorubicin, 4 x 10(-7) M; doxorubicin, 4 x 10(-7) M; idarubicin, 1.8 x 10(-6) M; 4'-epidoxorubicin, 2 x 10(-6) M; aclacinomycin, 4 x 10(-6) M; and menogaril, 6 x 10(-6) M. Partially purified helicases from HeLa cells and murine mammary carcinoma FM3A cells also were potently inhibited by doxorubicin, with IC50 values of 4 x 10(-7) M and 9 x 10(-7) M, respectively. Because the abundance, specificities, and types of helicases vary in the cell, this site of action for anthracycline antibiotics may help explain anthracycline potency, drug specificity for DNA or RNA inhibition, and some types of cellular resistance to these drugs.

摘要

解旋酶对于DNA复制和转录都至关重要,因为它们能解开双链DNA,为复制或转录准备单链。由于抗癌蒽环类抗生素主要通过嵌入结合来稳定双链DNA,我们预计嵌入的抗生素会干扰解旋酶的作用。我们使用与互补的M13mp19(+)环状单链DNA退火的32P标记的17聚体双链DNA解旋酶底物,检测了蒽环类抗生素对SV40大T抗原解旋酶活性的影响。蒽环类抗生素能有效抑制T抗原解旋酶活性。蒽环类抗生素的T抗原解旋酶IC50值如下:诺加霉素,2×10(-7)M;柔红霉素,4×10(-7)M;阿霉素,4×10(-7)M;伊达比星,1.8×10(-6)M;4'-表阿霉素,2×10(-6)M;阿克拉霉素,4×10(-6)M;美诺加里尔,6×10(-6)M。来自HeLa细胞和小鼠乳腺癌FM3A细胞的部分纯化解旋酶也被阿霉素有效抑制,IC50值分别为4×10(-7)M和9×10(-7)M。由于细胞中解旋酶的丰度、特异性和类型各不相同,蒽环类抗生素的这一作用位点可能有助于解释蒽环类药物的效力、对DNA或RNA抑制的药物特异性以及某些类型的细胞对这些药物的耐药性。

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