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交联DNA的解链IV. 计算机模拟抗肿瘤药物分子形成的单功能加合物、链内和链间交联对DNA解链的总影响的方法

Melting of cross-linked DNA IV. Methods for computer modeling of total influence on DNA melting of monofunctional adducts, intrastrand and interstrand cross-links formed by molecules of an antitumor drug.

作者信息

Lando D Y, Fridman A S, Haroutiunian S G, Benight A S, Collery P

机构信息

Institute of Bioorganic Chemistry, Belarus National Academy of Sciences, Minsk.

出版信息

J Biomol Struct Dyn. 2000 Feb;17(4):697-711. doi: 10.1080/07391102.2000.10506560.

Abstract

A theoretical method is developed for calculation of melting curves of covalent complexes of DNA with antitumor drugs. The method takes into account all the types of chemical modifications of the double helix caused by platinum compounds and DNA alkylating agents: 1) monofunctional adducts bound to one nucleotide; 2) intrastrand cross-links which appear due to bidentate binding of a drug molecule to two nucleotides that are included into the same DNA strand; 3) interstrand cross-links caused by bidentate binding of a molecule to two nucleotides of different strands. The developed calculation method takes into account the following double helix alterations at sites of chemical modifications: 1) a change in stability of chemically modified base pairs and neighboring ones, that is caused by all the types of chemical modifications; 2) a change in the energy of boundaries between helical and melted regions at sites of chemical modification (local alteration of the factor of cooperativity of DNA melting), that is caused by all the types of chemical modifications, too; 3) a change in the loop entropy factor of melted regions that include interstrand cross-links; 4) the prohibition of divergence of DNA strands in completely melted DNA molecules, which is caused by interstrand cross-links only. General equations are derived, and three calculation methods are proposed to calculate DNA melting curves and the parameters that characterize the helix-coil transition.

摘要

开发了一种理论方法来计算DNA与抗肿瘤药物共价复合物的熔解曲线。该方法考虑了铂化合物和DNA烷基化剂引起的双螺旋所有类型的化学修饰:1)与一个核苷酸结合的单功能加合物;2)由于药物分子与同一条DNA链中的两个核苷酸双齿结合而出现的链内交联;3)分子与不同链的两个核苷酸双齿结合引起的链间交联。所开发的计算方法考虑了化学修饰位点的以下双螺旋改变:1)由所有类型的化学修饰引起的化学修饰碱基对及其相邻碱基对稳定性的变化;2)化学修饰位点螺旋区和熔解区之间边界能量的变化(DNA熔解协同因子的局部改变),这也是由所有类型的化学修饰引起的;3)包含链间交联的熔解区环熵因子的变化;4)仅由链间交联引起的完全熔解的DNA分子中DNA链发散的禁止。推导了通用方程,并提出了三种计算方法来计算DNA熔解曲线以及表征螺旋-线圈转变的参数。

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