Department of Molecular and Cellular Biology and Biochemistry, Brown University, Providence, Rhode Island 02912, United States.
Biochemistry. 2012 Jan 10;51(1):52-62. doi: 10.1021/bi201552s. Epub 2011 Dec 14.
In the phenomenon of trinucleotide repeat (TNR) expansion, an important interplay exists between DNA damage repair of 8-oxo-7,8-dihydroguanine (8-oxoG) and noncanonical structure formation. We show that TNR DNA adapts its structure to accommodate 8-oxoG. Using chemical probe analysis, we find that CAG repeats composing the stem-loop arm of a three-way junction alter the population of structures in response to 8-oxoG by positioning the lesion at or near the loop. Furthermore, we find that oligonucleotides composed of odd-numbered repeat sequences, which form populations of two structures, will also alter their structure to place 8-oxoG in the loop. However, sequences with an even number of repeats do not display this behavior. Analysis by differential scanning calorimetry indicates that when the lesion is located within the loop, there are no significant changes to the thermodynamic parameters as compared to the DNA lacking 8-oxoG. This contrasts with the enthalpic destabilization observed when 8-oxoG is base-paired to C and indicates that positioning 8-oxoG in the loop avoids the thermodynamic penalty associated with 8-oxoG base-pairing. Since formation of stem-loop hairpins is proposed to facilitate TNR expansion, these results highlight the importance of defining the structural consequences of DNA damage.
在三核苷酸重复(TNR)扩展现象中,8-氧-7,8-二氢鸟嘌呤(8-oxoG)的 DNA 损伤修复与非 canonical 结构形成之间存在重要相互作用。我们表明,TNR DNA 会调整其结构以适应 8-oxoG。通过化学探针分析,我们发现构成三链结茎环臂的 CAG 重复序列通过将损伤定位在环附近或环内来改变结构的分布,以响应 8-oxoG。此外,我们发现由奇数重复序列组成的寡核苷酸,其形成两种结构的群体,也会改变其结构将 8-oxoG 置于环中。然而,具有偶数重复数的序列不会表现出这种行为。差示扫描量热法分析表明,与缺乏 8-oxoG 的 DNA 相比,当损伤位于环内时,热力学参数没有明显变化。这与 8-oxoG 与 C 碱基配对时观察到的焓失稳形成对比,表明将 8-oxoG 定位在环中避免了与 8-oxoG 碱基配对相关的热力学惩罚。由于形成茎环发夹结构被认为有助于 TNR 扩展,这些结果强调了定义 DNA 损伤结构后果的重要性。