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胸腺嘧啶二聚体与黄素腺嘌呤二核苷酸之间的相互作用:一项密度泛函理论和直接从头算分子动力学研究

Interaction between thymine dimer and flavin-adenine dinucleotide: a DFT and direct ab initio molecular dynamics study.

作者信息

Tachikawa Hiroto, Kawabata Hiroshi

机构信息

Division of Materials Chemistry, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan.

出版信息

J Phys Chem B. 2008 Jun 19;112(24):7315-9. doi: 10.1021/jp801564t. Epub 2008 May 27.

DOI:10.1021/jp801564t
PMID:18503272
Abstract

The interaction between the fully reduced flavin-adenine dinucleotide (FADH (-)) and thymine dimer (T) 2 has been investigated by means of density functional theory (DFT) calculations. The charges of FADH (-) and (T) 2 were calculated to be -0.9 and -0.1, respectively, at the ground state. By photoirradiation, an electron transfer occurred from FADH (-) to (T) 2 at the first excited state. Next, the reaction dynamics of electron capture of (T) 2 have been investigated by means of the direct ab initio molecular dynamics (MD) method (HF/3-21G(d) and B3LYP/6-31G(d) levels) in order to elucidate the mechanism of the repair process of thymine dimer caused by the photoenzyme. The thymine dimer has two C-C single bonds between thymine rings (C 5-C 5' and C 6-C 6' bonds) at the neutral state, which is expressed by (T) 2. After the electron capture of (T) 2, the C 5-C 5' bond was gradually elongated and then it was preferentially broken. The time scale of the C-C bond breaking and formation of the intermediate with a single bond (T) 2 (-) was estimated to be 100-150 fs. The present calculations confirmed that the repair reaction of thymine dimer takes place efficiently via an electron-transfer process from the FADH (-) enzyme.

摘要

通过密度泛函理论(DFT)计算研究了完全还原的黄素腺嘌呤二核苷酸(FADH(-))与胸腺嘧啶二聚体(T)2之间的相互作用。在基态下,FADH(-)和(T)2的电荷分别计算为-0.9和-0.1。通过光照射,在第一激发态下发生了从FADH(-)到(T)2的电子转移。接下来,为了阐明光酶引起的胸腺嘧啶二聚体修复过程的机制,采用直接从头算分子动力学(MD)方法(HF/3-21G(d)和B3LYP/6-31G(d)水平)研究了(T)2的电子捕获反应动力学。胸腺嘧啶二聚体在中性状态下,胸腺嘧啶环之间有两个C-C单键(C5-C5'和C6-C6'键),用(T)2表示。(T)2发生电子捕获后,C5-C5'键逐渐伸长,然后优先断裂。C-C键断裂和形成单键中间体(T)2(-)的时间尺度估计为100-150飞秒。目前的计算证实,胸腺嘧啶二聚体的修复反应通过FADH(-)酶的电子转移过程有效地发生。

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