化学
碱基
离域电子
鸟嘌呤
激发态
DNA
表观遗传学
三重态
复式(建筑)
发色团
光化学
核酸
碱基对
基因
生物化学
分子
原子物理学
核苷酸
有机化学
物理
作者
Xueli Wang,Lara Martínez‐Fernández,Yuyuan Zhang,Peicong Wu,Bern Kohler,Roberto Improta,Jinquan Chen
摘要
Epigenetic modifications impart important functionality to nucleic acids during gene expression but may increase the risk of photoinduced gene mutations. Thus, it is crucial to understand how these modifications affect the photostability of duplex DNA. In this work, the ultrafast formation (<20 ps) of a delocalized triplet charge transfer (CT) state spreading over two stacked neighboring nucleobases after direct UV excitation is demonstrated in a DNA duplex, d(G5fC)9•d(G5fC)9, made of alternating guanine (G) and 5-formylcytosine (5fC) nucleobases. The triplet yield is estimated to be 8 ± 3%, and the lifetime of the triplet CT state is 256 ± 22 ns, indicating that epigenetic modifications dramatically alter the excited state dynamics of duplex DNA and may enhance triplet state-induced photochemistry.
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