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通过分子模拟研究双环霉素与DNA的结合

Duocarmycins binding to DNA investigated by molecular simulation.

作者信息

Spiegel Katrin, Rothlisberger Ursula, Carloni Paolo

机构信息

Center for Molecular Modeling, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Phys Chem B. 2006 Mar 2;110(8):3647-60. doi: 10.1021/jp0548265.

Abstract

Duocarmycins are a potent class of antitumor agents, whose activity arises through their covalent binding to adenine nucleobases of DNA.(1-3) Here, we perform molecular dynamics (MD) and hybrid Car-Parinello QM/MM simulations to investigate aspects of duocarmycin binding to the d(pGpApCpTpApApTpTpGpApC) oligonucleotide. We focus on the derivatives (+)-duocarmycin SA (DSA) and (+)-duocarmycin SI (DSI), for which structural information of the covalent complex with the oligonucleotide is available, as well as on the related, but less reactive, NBOC-duocarmycin SA (NBOC-DSA), interacting with the same oligonucleotide. Comparison is made with adenine alkylation reaction in water performed by the smallest of these compounds (NBOC-DSA). The MD calculations suggest that, in noncovalent complexes, (i) drug binding causes a partial dehydration of the minor groove, without inducing a significant conformational changes, and (ii) DSA and DSI occupy a more favorable position for nucleophilic attack than NBOC-DSA, consistently with the lower reactivity of the latter. The QM/MM calculations, which are used to investigate the first step of the alkylation reaction, turn out to provide strongly underestimated free energy barriers. Within these approximations, our calculations suggest that an important ingredient for the experimentally observed DNA catalytic power is the polarization of the drug by the biomolecular scaffold.

摘要

双炔酰菌素是一类强效抗肿瘤药物,其活性源于它们与DNA腺嘌呤碱基的共价结合。(1-3)在此,我们进行分子动力学(MD)和混合Car-Parinello量子力学/分子力学(QM/MM)模拟,以研究双炔酰菌素与d(pGpApCpTpApApTpTpGpApC)寡核苷酸结合的各个方面。我们重点关注衍生物(+)-双炔酰菌素SA(DSA)和(+)-双炔酰菌素SI(DSI),对于它们与寡核苷酸的共价复合物的结构信息是可用的,以及相关的但反应性较低的N-叔丁氧羰基-双炔酰菌素SA(NBOC-DSA),它与相同的寡核苷酸相互作用。将其与这些化合物中最小的(NBOC-DSA)在水中进行的腺嘌呤烷基化反应进行比较。MD计算表明,在非共价复合物中,(i)药物结合导致小沟部分脱水,而不引起显著的构象变化,并且(ii)DSA和DSI比NBOC-DSA占据更有利于亲核攻击的位置,这与后者较低的反应性一致。用于研究烷基化反应第一步的QM/MM计算结果表明,其提供的自由能垒被严重低估。在这些近似范围内,我们的计算表明,实验观察到的DNA催化能力的一个重要因素是生物分子支架对药物的极化作用。

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