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Interaction of a gold(i) dicarbene anticancer drug with human telomeric DNA G-quadruplex: solution and computationally aided X-ray diffraction analysis.金(i)二卡宾抗癌药物与人端粒 DNA G-四链体的相互作用:溶液和计算辅助 X 射线衍射分析。
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Chemistry. 2017 Oct 4;23(55):13784-13791. doi: 10.1002/chem.201702854. Epub 2017 Sep 6.
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靶向端粒:金-卡宾与DNA结合的分子动力学和自由能模拟

Targeting Telomeres: Molecular Dynamics and Free Energy Simulation of Gold-Carbene Binding to DNA.

作者信息

Nayis Asmar, Liebl Korbinian, Frost Christina V, Zacharias Martin

机构信息

Physics Department T38, Technical University of Munich, Garching, Germany.

Physics Department T38, Technical University of Munich, Garching, Germany.

出版信息

Biophys J. 2021 Jan 5;120(1):101-108. doi: 10.1016/j.bpj.2020.11.2263. Epub 2020 Dec 5.

DOI:10.1016/j.bpj.2020.11.2263
PMID:33285115
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7820797/
Abstract

DNA sequences in regulatory regions and in telomers at the ends of chromosomes frequently contain tandem repeats of guanine nucleotides that can form stacked structures stabilized by Hoogsten pairing and centrally bound monovalent cations. The replication and elongation of telomeres requires the disruption of these G-quadruplex structures. Hence, drug molecules such as gold (Au)-carbene that stabilize G-quadruplexes may also interfere with the elongation of telomeres and, in turn, could be used to control cell replication and growth. To better understand the molecular mechanism of Au-carbene binding to G-quadruplexes, we employed molecular dynamics simulations and free energy simulations. Whereas very restricted mobility of two Au-carbene ligands was found upon binding as a doublet to one side of the G-quadruplex, much larger translational and orientational mobility was observed for a single Au-carbene binding at the second G-quadruplex surface. Comparative simulations on duplex DNA in the presence of Au-carbene ligands indicates a preference for the minor groove and weaker unspecific and more salt-dependent binding than to the G-quadruplex surface. Analysis of energetic contributions reveals a dominance of nonpolar and van der Waals interactions to drive binding. The simulations can also be helpful for proposing possible modifications that could improve Au-carbene affinity and specificity for G-quadruplex binding.

摘要

调控区域以及染色体末端端粒中的DNA序列常常包含鸟嘌呤核苷酸的串联重复序列,这些序列能够形成由Hoogsten配对和中心结合的单价阳离子稳定的堆积结构。端粒的复制和延伸需要破坏这些G-四链体结构。因此,诸如金(Au)-卡宾等能够稳定G-四链体的药物分子可能也会干扰端粒的延伸,进而可用于控制细胞的复制和生长。为了更好地理解金-卡宾与G-四链体结合的分子机制,我们采用了分子动力学模拟和自由能模拟。当两个金-卡宾配体以双联形式结合到G-四链体的一侧时,发现其移动性非常受限,而单个金-卡宾在第二个G-四链体表面结合时,则观察到更大的平移和取向移动性。在存在金-卡宾配体的情况下对双链DNA进行的比较模拟表明,与G-四链体表面相比,金-卡宾更倾向于结合小沟,且非特异性结合较弱,对盐的依赖性更强。对能量贡献的分析揭示了非极性和范德华相互作用在驱动结合中占主导地位。这些模拟对于提出可能改善金-卡宾对G-四链体结合的亲和力和特异性的修饰也可能有所帮助。