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一种氧化对两种具有生物学相关性的 G-四链体的差异影响的计算研究:在癌基因表达中的可能意义。

An in silico study of the differential effect of oxidation on two biologically relevant G-quadruplexes: possible implications in oncogene expression.

机构信息

Cranfield Health, Cranfield University, Cranfield, Bedfordshire, United Kingdom.

出版信息

PLoS One. 2012;7(8):e43735. doi: 10.1371/journal.pone.0043735. Epub 2012 Aug 22.

Abstract

G-quadruplex structures, formed from guanine rich sequences, have previously been shown to be involved in various physiological processes including cancer-related gene expression. Furthermore, G-quadruplexes have been found in several oncogene promoter regions, and have been shown to play a role in the regulation of gene expression. The mutagenic properties of oxidative stress on DNA have been widely studied, as has the association with carcinogenesis. Guanine is the most susceptible nucleotide to oxidation, and as such, G-rich sequences that form G-quadruplexes can be viewed as potential "hot-spots" for DNA oxidation. We propose that oxidation may destabilise the G-quadruplex structure, leading to its unfolding into the duplex structure, affecting gene expression. This would imply a possible mechanism by which oxidation may impact on oncogene expression. This work investigates the effect of oxidation on two biologically relevant G-quadruplex structures through 500 ns molecular dynamics simulations on those found in the promoter regions of the c-Kit and c-Myc oncogenes. The results show oxidation having a detrimental effect on stability of the structure, substantially destabilising the c-Kit quadruplex, and with a more attenuated effect on the c-Myc quadruplex. Results are suggestive of a novel route for oxidation-mediated oncogenesis and may have wider implications for genome stability.

摘要

G-四链体结构由富含鸟嘌呤的序列形成,先前已被证明参与了多种生理过程,包括与癌症相关的基因表达。此外,在几个癌基因启动子区域发现了 G-四链体,并已被证明在基因表达调控中发挥作用。氧化应激对 DNA 的诱变特性已得到广泛研究,与致癌作用的关联也是如此。鸟嘌呤是最易受氧化影响的核苷酸,因此,形成 G-四链体的富含鸟嘌呤的序列可以被视为 DNA 氧化的潜在“热点”。我们提出,氧化可能会使 G-四链体结构不稳定,导致其展开成双链结构,从而影响基因表达。这意味着氧化可能影响癌基因表达的一种可能机制。本工作通过对 c-Kit 和 c-Myc 癌基因启动子区域中发现的两种生物相关 G-四链体结构进行 500ns 分子动力学模拟,研究了氧化对它们的影响。结果表明,氧化对结构稳定性有不利影响,显著降低了 c-Kit 四链体的稳定性,而对 c-Myc 四链体的影响则较弱。结果表明,氧化介导的致癌作用可能存在新途径,对基因组稳定性可能具有更广泛的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7475/3425515/f9907a36bd49/pone.0043735.g001.jpg

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