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基于氟化DNA碱基对的电离诱导质子开关元件的分子设计

Molecular Design of Ionization-Induced Proton Switching Element Based on Fluorinated DNA Base Pair.

作者信息

Tachikawa Hiroto, Kawabata Hiroshi

机构信息

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

出版信息

J Phys Chem A. 2016 Mar 10;120(9):1529-35. doi: 10.1021/acs.jpca.6b00328. Epub 2016 Feb 29.

Abstract

To design theoretically the high-performance proton switching element based on DNA base pair, the effects of fluorine substitution on the rate of proton transfer (PT) in the DNA model base pair have been investigated by means of direct ab initio molecular dynamics (AIMD) method. The 2-aminopyridine dimer, (AP)2, was used as the model of the DNA base pair. One of the hydrogen atoms of the AP molecule in the dimer was substituted by a fluorine (F) atom, and the structures of the dimer, expressed by F-(AP)2, were fully optimized at the MP2/6-311++G(d,p) level. The direct AIMD calculations showed that the proton is transferred within the base pair after the vertical ionization. The rates of PT in F-(AP)2(+) were calculated and compared with that of (AP)2(+) without an F atom. It was found that PT rate is accelerated by the F-substitution. Also, the direction of PT between F-AP and AP molecules can be clearly controlled by the position of F-substitution (AP)2 in the dimer.

摘要

为了从理论上设计基于DNA碱基对的高性能质子开关元件,通过直接从头算分子动力学(AIMD)方法研究了氟取代对DNA模型碱基对中质子转移(PT)速率的影响。2-氨基吡啶二聚体(AP)2用作DNA碱基对的模型。二聚体中AP分子的一个氢原子被氟(F)原子取代,由F-(AP)2表示的二聚体结构在MP2/6-311++G(d,p)水平上进行了完全优化。直接AIMD计算表明,垂直电离后质子在碱基对内转移。计算了F-(AP)2(+)中的PT速率,并与不含F原子的(AP)2(+)的PT速率进行了比较。发现氟取代加速了PT速率。此外,F-AP和AP分子之间PT的方向可以通过二聚体中F取代(AP)2的位置清楚地控制。

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