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一种杀菌剂对序列依赖性DNA去稳定作用的光谱及模拟研究

Spectroscopic and Simulation Studies of the Sequence-Dependent DNA Destabilization by a Fungicide.

作者信息

Sarkar Sunipa, Chandra Singh Prashant

机构信息

School of Chemical Sciences, Indian Association for the Cultivation of Science, Kolkata 700032, India.

出版信息

ACS Omega. 2021 May 26;6(22):14371-14378. doi: 10.1021/acsomega.1c01228. eCollection 2021 Jun 8.

Abstract

The understanding of the structural change of DNA induced by fungicides is essential as the non-targeted action of fungicides causes genotoxicity, leading to several serious diseases such as cancer, behavioral change, and nausea. In this study, the binding of an important fungicide, namely, -dodecylguanidine acetate (dodine), with B-DNA having different sequences of nucleobases and its effect on the structure of B-DNA has been investigated using spectroscopic and simulation methods. In general, the addition of dodine destabilizes DNA; however, the binding of dodine causing the destabilization of DNA is highly sequence dependent. In the case of adenine(A)-thymine(T)-based DNA, dodine intrudes into the minor groove of DNA and interacts with the A-T bases mainly through its hydrocarbon tail, which destabilizes the stacking interaction of the flanking bases. In contrast, the polar group of dodine interacts with guanine(G)-cytosine(C)-rich DNA, and the interaction is dynamic as it shuttles between the minor groove and terminal regions. The binding of dodine with G-C-rich DNA affects the stacking interaction of the terminal base regions specifically. This study reveals the base-specific binding mode of dodine, which causes destabilization of the duplex DNA.

摘要

了解杀菌剂引起的DNA结构变化至关重要,因为杀菌剂的非靶向作用会导致基因毒性,引发多种严重疾病,如癌症、行为改变和恶心。在本研究中,使用光谱学和模拟方法研究了一种重要的杀菌剂——醋酸十二烷基胍(多果定)与具有不同核碱基序列的B-DNA的结合及其对B-DNA结构的影响。一般来说,多果定的加入会使DNA不稳定;然而,多果定导致DNA不稳定的结合高度依赖于序列。在基于腺嘌呤(A)-胸腺嘧啶(T)的DNA中,多果定侵入DNA的小沟,主要通过其烃链尾部与A-T碱基相互作用,这会破坏侧翼碱基的堆积相互作用。相比之下,多果定的极性基团与富含鸟嘌呤(G)-胞嘧啶(C)的DNA相互作用,并且这种相互作用是动态的,因为它在小沟和末端区域之间穿梭。多果定与富含G-C的DNA的结合特别影响末端碱基区域的堆积相互作用。这项研究揭示了多果定的碱基特异性结合模式,这种模式会导致双链DNA不稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c451/8190899/348ecc34c104/ao1c01228_0002.jpg

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