Guangdong Engineering and Technology Research Center for Advanced Nanomaterials, School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523808, People's Republic of China.
Org Biomol Chem. 2019 Jan 23;17(4):892-897. doi: 10.1039/c8ob02882f.
At the density functional theory (DFT) level, addition reactions between the guanine-8-yl radical and its 3'/5' neighboring purine deoxynucleosides forming the purine-purine type intrastrand cross-links were studied. It is found that addition of the guanine-8-yl radical to the C8 site of its 5' neighboring deoxyguanosine or deoxyadenosine is a two-step reaction consisting of a structurally relatively unfavourable conformational transformation step, while the corresponding 3' C8 addition is straightforward and kinetically more efficient. The 3' C8 preference of the guanine-8-yl radical additions indicates the existence of an obvious sequence effect, which is completely opposite to that observed in the formation of pyrimidine radicals induced DNA intrastrand cross-links. The detrimental effects from steric hindrance and stabilizing weak interactions make these addition reactions markedly suppressed in double stranded DNA. This work broadens our knowledge about the possible types of DNA intrastrand cross-links.
在密度泛函理论(DFT)水平上,研究了鸟嘌呤-8-基自由基与其 3'/5' 相邻嘌呤脱氧核苷之间的加成反应,形成嘌呤-嘌呤型链内交联。研究发现,鸟嘌呤-8-基自由基加成到其 5' 相邻脱氧鸟苷或脱氧腺苷的 C8 位是一个由结构上相对不利的构象转化步骤组成的两步反应,而相应的 3' C8 加成则是直接的,并且动力学上更有效。鸟嘌呤-8-基自由基加成的 3' C8 偏好表明存在明显的序列效应,这与在嘧啶自由基诱导的 DNA 链内交联形成中观察到的完全相反。空间位阻和稳定弱相互作用的不利影响使得这些加成反应在双链 DNA 中明显受到抑制。这项工作拓宽了我们对可能的 DNA 链内交联类型的认识。