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原小檗碱类似物对人DNA拓扑异构酶I中毒时小沟导向和嵌入性配体与DNA的相互作用

Minor groove-directed and intercalative ligand-DNA interactions in the poisoning of human DNA topoisomerase I by protoberberine analogs.

作者信息

Pilch D S, Yu C, Makhey D, LaVoie E J, Srinivasan A R, Olson W K, Sauers R R, Breslauer K J, Geacintov N E, Liu L F

机构信息

Department of Pharmacology, University of Medicine and Dentistry of New Jersey, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.

出版信息

Biochemistry. 1997 Oct 14;36(41):12542-53. doi: 10.1021/bi971272q.

DOI:10.1021/bi971272q
PMID:9376359
Abstract

Spectroscopic, calorimetric, DNA cleavage, electrophoretic, and computer modeling techniques have been employed to characterize the DNA binding and topoisomerase poisoning properties of three protoberberine analogs, 8-desmethylcoralyne (DMC), 5,6-dihydro-8-desmethylcoralyne (DHDMC), and palmatine, which differ in the chemical structures of their B- and/or D-rings. DNA topoisomerase-mediated cleavage assays revealed that these compounds were unable to poison mammalian type II topoisomerase. By contrast, the three protoberberine analogs poisoned human topoisomerase I according to the following hierarchy: DHDMC > DMC > palmatine. DNA binding by all three protoberberine analogs induced negative flow linear dichroism signals as well as unwinding of the host duplex. These two observations are consistent with an intercalative mode of protoberberine binding to duplex DNA. However, a comparison of the DNA binding properties for DMC and DHDMC, which differ only by the state of saturation at the 5,6 positions of the B-ring, revealed that the protoberberine analogs do not "behave" like classic DNA intercalators. Specifically, saturation of the 5-6 double bond in the B-ring of DMC, thereby converting it to the DHDMC molecule, was associated with enhanced DNA unwinding as well as a reversal of DNA binding preference from a DNA duplex with an inaccessible or occluded minor groove {poly[d(G-C)]2} to DNA duplexes with accessible or unobstructed minor grooves {poly[d(A-T)]2 and poly[d(I-C)]2}. In addition, a comparison of the DNA binding properties for DHDMC and palmatine revealed that transferring the 11-methoxy moiety on the D-ring of DHDMC to the 9 position, thereby converting it to palmatine, was associated with a reduction in binding affinity for both duplexes with unobstructed minor grooves as well as for duplexes with occluded minor grooves. These DNA binding properties are consistent with a "mixed-mode" DNA binding model for protoberberines in which a portion of the ligand molecule intercalates into the double helix, while the nonintercalated portion of the ligand molecule protrudes into the minor groove of the host duplex, where it is thereby available for interactions with atoms lining the floor and/or walls of the minor groove. Furthermore, saturation at the 5,6 positions of the B-ring, which causes the A-ring to be tilted relative to the plane formed by rings C and D, appears to stabilize the interaction between the host duplex and the minor groove-directed portion of the protoberberine ligand. Computer modeling studies on the DHDMC-poly[d(A-T)]2 complex suggest that this interaction may involve van der Waals contacts between the ligand A-ring and backbone sugar atoms lining the minor groove of the host duplex. The hierarchy of topoisomerase I poisoning noted above suggests that this minor groove-directed interaction may play an important role in topoisomerase I poisoning by protoberberine analogs. In the aggregate, our results presented here, coupled with the recent demonstration of topoisomerase I poisoning by minor groove-binding terbenzimidazoles [Sun, Q., Gatto, B., Yu, C., Liu, A. , Liu, L. F., & LaVoie, E. J. (1995) J. Med. Chem. 38, 3638-3644], suggest that minor groove-directed ligand-DNA interactions may be of general importance in the poisoning of topoisomerase I.

摘要

已采用光谱、量热、DNA切割、电泳和计算机建模技术来表征三种原小檗碱类似物8-去甲基紫堇灵(DMC)、5,6-二氢-8-去甲基紫堇灵(DHDMC)和巴马汀的DNA结合及拓扑异构酶中毒特性,它们在B环和/或D环的化学结构上存在差异。DNA拓扑异构酶介导的切割试验表明,这些化合物无法使哺乳动物II型拓扑异构酶中毒。相比之下,这三种原小檗碱类似物使人类拓扑异构酶I中毒的能力按以下顺序排列:DHDMC>DMC>巴马汀。所有三种原小檗碱类似物与DNA的结合均诱导出负向流动线性二色性信号以及宿主双链的解旋。这两个观察结果与原小檗碱与双链DNA的嵌入结合模式一致。然而,对仅在B环的5,6位饱和度状态上存在差异的DMC和DHDMC的DNA结合特性进行比较后发现,原小檗碱类似物的“行为”并不像经典的DNA嵌入剂。具体而言,DMC的B环中5-6双键饱和,从而将其转化为DHDMC分子,这与增强的DNA解旋以及DNA结合偏好从具有不可及或封闭小沟的DNA双链(聚[d(G-C)]2)转变为具有可及或无障碍小沟的DNA双链(聚[d(A-T)]2和聚[d(I-C)]2)有关。此外,对DHDMC和巴马汀的DNA结合特性进行比较发现,将DHDMC的D环上的11-甲氧基部分转移至9位,从而将其转化为巴马汀,这与对具有无障碍小沟的双链以及具有封闭小沟的双链的结合亲和力降低有关。这些DNA结合特性与原小檗碱的“混合模式”DNA结合模型一致,在该模型中,配体分子的一部分嵌入双螺旋中,而配体分子的非嵌入部分突出到宿主双链的小沟中,在那里它可与小沟底部和/或壁上的原子相互作用。此外,B环5,6位的饱和会导致A环相对于由C环和D环形成的平面倾斜,这似乎稳定了宿主双链与原小檗碱配体的小沟导向部分之间的相互作用。对DHDMC-聚[d(A-T)]2复合物的计算机建模研究表明,这种相互作用可能涉及配体A环与宿主双链小沟内衬的主链糖原子之间的范德华接触。上述拓扑异构酶I中毒的顺序表明,这种小沟导向的相互作用可能在原小檗碱类似物对拓扑异构酶I的中毒中起重要作用。总体而言,我们在此展示的结果,再加上最近关于小沟结合的特苯并咪唑对拓扑异构酶I中毒的证明[Sun, Q., Gatto, B., Yu, C., Liu, A., Liu, L. F., & LaVoie, E. J. (1995) J. Med. Chem. 38, 3638 - 3644],表明小沟导向的配体-DNA相互作用可能在拓扑异构酶I中毒中普遍具有重要意义。

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