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首页> 外文期刊>Journal of Medicinal Chemistry >Design, synthesis, and evaluation of a novel sequence-selective epoxide-containing DNA cross-linking agent based on the pyrrolo(2, 1-c)(1,4)benzodiazepine system.
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Design, synthesis, and evaluation of a novel sequence-selective epoxide-containing DNA cross-linking agent based on the pyrrolo(2, 1-c)(1,4)benzodiazepine system.

机译:基于吡咯并(2,1-c)(1,4)苯并二氮杂卓系统的新型序列选择性含环氧化物的DNA交联剂的设计,合成和评估。

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摘要

Synthetic routes have been investigated to prepare a novel C8-epoxide-functionalized pyrrolo[2,1-c][1,4]benzodiazepine 6 as a potential sequence-selective DNA cross-linking agent (Wilson et al. Tetrahedron Lett. 1995, 36, 6333-6336). A successful synthesis was accomplished via a 10-step route involving a pro-N10-Fmoc cleavage method that should have general applicability to other pyrrolobenzodiazepine (PBD) molecules containing acid- or nucleophile-sensitive groups. During the course of this work, a one-pot reductive cyclization procedure for the synthesis of PBD N10-C11 imines from nitro dimethyl acetals was also discovered, although this method results in C11a racemization which can reduce DNA binding affinity and cytotoxicity. The target epoxide 6 was shown by thermal denaturation studies to have a significantly higher DNA-binding affinity than the parent DC-81 (3) or the C8-propenoxy-PBD (15), which is structurally similar but lacks the epoxide moiety. The time course of effects upon thermal denaturation indicated a rapid initial binding phase followed by a slower phase consistent with the stepwise cross-linking of DNA observed for a difunctional agent. This was confirmed by an electrophoretic assay which demonstrated efficient induction of interstrand cross-links in plasmid DNA at concentrations >1 microM. Higher levels of interstrand cross-linking were observed at 24 h compared to 6 h incubation. A Taq polymerase stop assay indicated a preference for binding to guanine-rich sequences as predicted for bis-alkylation in the minor groove of DNA by epoxide and imine moieties. The pattern of stop sites could be partly rationalized by molecular modeling studies which suggested low-energy models to account for the observed binding behavior. The epoxide PBD 6 was shown to have significant cytotoxicity (45-60 nM) in the A2780, CH1, and CH1cis(R) human ovarian carcinoma cell lines and an IC(50) of 0.2 microM in A2780cis(R). The significant activity of 6 in the cisplatin-resistant CH1cis(R) cell line (IC(50) = 47 nM) gave a resistance factor of 0.8 compared to the parent cell line, demonstrating no cross-resistance with the major groove cross-linking agent cisplatin.
机译:已经研究了合成途径以制备新型的C8-环氧官能化的吡咯并[2,1-c] [1,4]苯并二氮杂6 6作为潜在的序列选择性DNA交联剂(Wilson等,Tetrahedron Lett。1995, 36,6333-6336)。通过涉及N10-Fmoc原裂解方法的10步路线成功完成了合成,该方法应普遍适用于其他含有酸或亲核敏感基团的吡咯并苯并二氮杂(PBD)分子。在这项工作的过程中,还发现了一锅还原环化程序,用于从硝基二甲基乙缩醛合成PBD N10-C11亚胺,尽管这种方法导致C11a外消旋,可以降低DNA结合亲和力和细胞毒性。通过热变性研究显示,目标环氧化物6具有比母体DC-81(3)或C8-丙氧基-PBD(15)更高的DNA结合亲和力,后者在结构上相似但缺少环氧化物部分。对热变性的作用的时间过程表明快速的初始结合阶段,随后是较慢的阶段,这与观察到的双官能剂DNA的逐步交联一致。通过电泳分析证实了这一点,该电泳分析证明了在浓度大于1 microM的质粒DNA中有效诱导了链间交联。与6小时孵育相比,在24小时观察到更高水平的链间交联。 Taq聚合酶终止试验表明,如环氧化物和亚胺部分在DNA小沟中的双烷基化所预测的那样,倾向于与鸟嘌呤丰富的序列结合。终止位点的模式可以通过分子建模研究部分地合理化,该研究提出了低能模型以说明观察到的结合行为。环氧PBD 6在A2780,CH1和CH1cis(R)人卵巢癌细胞系中具有明显的细胞毒性(45-60 nM),在A2780cis(R)中具有0.2 microM的IC(50)。与亲代细胞系相比,在顺铂耐药的CH1cis(R)细胞系中的6的显着活性(IC(50)= 47 nM)提供了0.8的抗性因子,表明与主要沟交联没有交叉抗性药剂顺铂。

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