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阿霉素 B 在 DNA 烷化和交联中的序列选择性:QM/MM 研究。

Sequence selectivity of azinomycin B in DNA alkylation and cross-linking: a QM/MM study.

机构信息

School of Chemistry, Bharathidasan University, Tiruchirappalli, 620024, India.

出版信息

J Mol Model. 2013 Jan;19(1):383-90. doi: 10.1007/s00894-012-1557-2. Epub 2012 Aug 24.

Abstract

Azinomycin B--a well-known antitumor drug--forms cross-links with DNA through alkylation of purine bases and blocks tumor cell growth. This reaction has been modeled using the ONIOM (B3LYP/6-31+g(d):UFF) method to understand the mechanism and sequence selectivity. ONIOM results have been checked for reliability by comparing them with full quantum mechanics calculations for selected paths. Calculations reveal that, among the purine bases, guanine is more reactive and is alkylated by aziridine ring through the C10 position, followed by alkylation of the epoxide ring through the C21 position of Azinomycin B. While the mono alkylation is controlled kinetically, bis-alkylation is controlled thermodynamically. Solvent effects were included using polarized-continuum-model calculations and no significant change from gas phase results was observed.

摘要

氮芥霉素 B——一种著名的抗肿瘤药物——通过嘌呤碱基的烷化作用与 DNA 形成交联,从而阻止肿瘤细胞生长。该反应已使用 ONIOM(B3LYP/6-31+g(d):UFF)方法进行建模,以了解其机制和序列选择性。ONIOM 结果已通过与选定路径的全量子力学计算进行比较来检查其可靠性。计算表明,在嘌呤碱基中,鸟嘌呤的反应性更高,并通过氮芥环的 C10 位被烷化,随后通过氮芥霉素 B 的环氧环的 C21 位被烷化。虽然单烷化动力学控制,但双烷化热力学控制。使用极化连续模型计算包括溶剂效应,并且没有观察到气相结果的显著变化。

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