二钌(II,III)和二铑(II,II)桨轮复合物与 DNA/RNA 核碱基的结合:对 AU 碱基对具有明显选择性的计算证据。

IF 2.7 4区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of molecular graphics & modelling Pub Date : 2024-05-31 DOI:10.1016/j.jmgm.2024.108806
Iogann Tolbatov , Paolo Umari , Alessandro Marrone
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引用次数: 0

摘要

多种药物治疗策略都涉及改变 DNA 或 RNA 的结构,从而破坏其正常功能。具有药用效果的金属复合物(又称金属药物)是专门用于攻击核苷的药物之一。二钌(II,III)和二铑(II,II)桨轮配合物是很有前途的双效药物,因为它们能够在被内源配体取代后释放出具有治疗活性的桥接配体。在本文中,我们研究了二钌(II,III)和二铑(II,II)桨轮配合物在轴向位置与 DNA/RNA 核碱基或碱基对配位形成的配合物的结构和稳定性,假定所有可触及的吡啶基硝基都能实现金属化。与二钌配合物相比,二铑配合物在吡啶基硝基上的配位更强。另一方面,我们发现二钌支架与核碱基目标的结合更具选择性。此外,我们还发现与腺嘌呤-胸腺嘧啶相比,二钌络合物在腺嘌呤-尿嘧啶碱基对上的配位更紧密,因此构成了罕见的 RNA 选择性实例。我们设想,本文所报告的计算结果可能会推动未来的实验,解决二钌和二铑桨轮复合物在单个核碱基或 DNA/RNA 片段上的结合问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The binding of diruthenium (II,III) and dirhodium (II,II) paddlewheel complexes at DNA/RNA nucleobases: Computational evidences of an appreciable selectivity toward the AU base pairs

Multiple medicinal strategies involve modifications of the structure of DNA or RNA, which disrupt their correct functioning. Metal complexes with medicinal effects, also known as metallodrugs, are among the agents intended specifically for the attack onto nucleosides. The diruthenium (II,III) and dirhodium (II,II) paddlewheel complexes constitute promising dual acting drugs due to their ability to release the therapeutically active bridging ligands upon their substitution by endogenous ligands. In this paper, we study the structure and the stability of the complexes formed by the diruthenium (II,III) and dirhodium (II,II) paddlewheel complexes coordinated in axial positions with the DNA/RNA nucleobases or base pairs, assuming the attainable metalation at all the accessible pyridyl nitrogens. Dirhodium complexes coordinate at the pyridyl nitrogens more strongly than the diruthenium complexes. On the other hand, we found that the diruthenium scaffold binds more selectively to nucleobase targets. Furthermore, we reveal a tighter coordination of diruthenium complex at the adenine-uracil base pair, compared to adenine-thymine, hence constituting a scarce instance of RNA-selectivity. We envision that the here reported computational outcomes may pace future experiments addressing the binding of diruthenium and dirhodium paddlewheel complexes at either single nucleobases or DNA/RNA fragments.

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来源期刊
Journal of molecular graphics & modelling
Journal of molecular graphics & modelling 生物-计算机:跨学科应用
CiteScore
5.50
自引率
6.90%
发文量
216
审稿时长
35 days
期刊介绍: The Journal of Molecular Graphics and Modelling is devoted to the publication of papers on the uses of computers in theoretical investigations of molecular structure, function, interaction, and design. The scope of the journal includes all aspects of molecular modeling and computational chemistry, including, for instance, the study of molecular shape and properties, molecular simulations, protein and polymer engineering, drug design, materials design, structure-activity and structure-property relationships, database mining, and compound library design. As a primary research journal, JMGM seeks to bring new knowledge to the attention of our readers. As such, submissions to the journal need to not only report results, but must draw conclusions and explore implications of the work presented. Authors are strongly encouraged to bear this in mind when preparing manuscripts. Routine applications of standard modelling approaches, providing only very limited new scientific insight, will not meet our criteria for publication. Reproducibility of reported calculations is an important issue. Wherever possible, we urge authors to enhance their papers with Supplementary Data, for example, in QSAR studies machine-readable versions of molecular datasets or in the development of new force-field parameters versions of the topology and force field parameter files. Routine applications of existing methods that do not lead to genuinely new insight will not be considered.
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