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含黄曲霉毒素 A 主要 DNA 加合物的单碱基缺失双链的分子动力学研究:序列背景和加合物离子化状态对损伤部位结构和致突变性的影响。

Molecular Dynamics Study of One-Base Deletion Duplexes Containing the Major DNA Adduct Formed by Ochratoxin A: Effects of Sequence Context and Adduct Ionization State on Lesion Site Structure and Mutagenicity.

机构信息

Computational Biochemistry Laboratory, Department of Chemistry and Centre for Advanced Studies in Chemistry , Panjab University , Chandigarh 160014 , India.

Departments of Chemistry and Toxicology , University of Guelph , Guelph , Ontario N1G 2W1 , Canada.

出版信息

J Phys Chem B. 2019 Aug 15;123(32):6980-6989. doi: 10.1021/acs.jpcb.9b06489. Epub 2019 Aug 2.

Abstract

Ochratoxin A (OTA) is a ubiquitous food toxin associated with chronic nephropathy in humans and renal carcinogenicity in rodents. The mutational spectra of cells exposed to OTA reveal that one-base deletions comprise the largest percentage (73%) of the total mutations that occur upon OTA exposure. To contribute toward understanding the prevalence of OTA-induced one-base deletion mutations, the present work uses molecular dynamics (MD) simulations to analyze the conformational preferences of one-base deletion duplexes containing OT-G, the major OTA adduct (ition prod) at the C-site of guanine. Specifically, the influence of OT-G in four possible ionization states and three sequence contexts (G, G and G in the I (5'-GGCGCC-3'), a prokaryotic mutational hotspot sequence) on the structure of the adducted DNA is investigated. Our data reveal that the damaged helices are stable in two (B-type (B) and stacked (S)) conformations that are structurally similar to those adopted by common N-linked C-guanine lesions. However, the adduct ionization state and sequence context affect the degree of helical distortion and the B/S conformational heterogeneity, which will impact the lesion repair and replication outcomes. This finding correlates with the experimentally reported tissue-specific mutagenicity of OTA exposure. Furthermore, regardless of the adduct conformation, ionization state, or sequence context, more stable lesion-site interactions and lack of disruption of the flanking base pairs in the one-base deletion duplexes compared to the corresponding two-base deletion helices rationalize the greater abundance of OTA induced one-base deletions. Overall, our work provides valuable structural insights that help explain the experimentally observed mutagenicity associated with OTA.

摘要

赭曲霉毒素 A(OTA)是一种普遍存在的食物毒素,与人类的慢性肾病和啮齿动物的肾致癌性有关。暴露于 OTA 的细胞的突变谱表明,碱基缺失构成了 OTA 暴露后发生的总突变的最大比例(73%)。为了帮助理解 OTA 诱导的单碱基缺失突变的普遍性,本工作使用分子动力学(MD)模拟分析了含有 OT-G 的单碱基缺失双链体的构象偏好,OT-G 是鸟嘌呤 C 位的主要 OTA 加合物(加合物)。具体来说,研究了 OT-G 在四种可能的电离状态和三种序列背景(I 位的 G、G 和 G(5'-GGCGCC-3'),原核突变热点序列)对加合物 DNA 结构的影响。我们的数据表明,受损的螺旋在两种(B 型(B)和堆叠(S))构象中稳定,这两种构象与常见的 N 连接 C-鸟嘌呤损伤所采用的构象相似。然而,加合物的电离状态和序列背景会影响螺旋扭曲的程度和 B/S 构象异质性,这将影响损伤修复和复制的结果。这一发现与 OTA 暴露的组织特异性致突变性的实验报道相符。此外,无论加合物的构象、电离状态还是序列背景如何,与相应的双碱基缺失螺旋相比,单碱基缺失双链体中更稳定的损伤部位相互作用和未破坏侧翼碱基对,解释了 OTA 诱导的单碱基缺失的更高丰度。总的来说,我们的工作提供了有价值的结构见解,有助于解释与 OTA 相关的实验观察到的致突变性。

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