Effect of nucleobase sequence on the proton-transfer reaction and stability of the guanine–cytosine base pair radical anion

文献情報

出版日 2010-12-09
DOI 10.1039/C0CP01419B
インパクトファクター 3.676
著者

Hsing-Yin Chen, Shu-Wen Yeh, Sodio C. N. Hsu, Chai-Lin Kao, Teng-Yuan Dong


原文を見る

要旨

The formation of base pair radical anions is closely related to many fascinating research fields in biology and chemistry such as radiation damage to DNA and electron transport in DNA. However, the relevant knowledge so far mainly comes from studies on isolated base pair radical anions, and their behavior in the DNA environment is less understood. In this study, we focus on how the nucleobase sequence affects the properties of the guanine–cytosine (GC) base pair radical anion. The energetic barrier and reaction energy for the proton transfer along the N1(G)–H⋯N3(C) hydrogen bond and the stability of GC˙− (i.e., electron affinity of GC) embedded in different sequences of base-pair trimer were evaluated using density functional theory. The computational results demonstrated that the presence of neighboring base pairs has an important influence on the behavior of GC˙− in the gas phase. The excess electron was found to be localized on the embedded GC and the charge leakage to neighboring base pairs was very minor in all of the investigated sequences. Accordingly, the sequence behavior of the proton-transfer reaction and the stability of GC˙− is chiefly governed by electrostatic interactions with adjacent base pairs. However, the effect of base stacking, due to its electrostatic nature, is severely screened upon hydration, and thus, the sequence dependence of the properties of GC˙− in aqueous environment becomes relatively weak and less than that observed in the gas phase. The effect of geometry relaxation associated with neighboring base pairs as well as the possibility of proton transfer along the N2(G)–H⋯O2(C) channel have also been investigated. The implications of the present findings to the electron transport and radiation damage of DNA are discussed.

関連文献

Electronic effects in profluorescent benzotriazinyl radicals: a combined experimental and theoretical study

Jessica Exner, Sina Klabunde, Michael R. Hansen, Armido Studer

2020-12-24 Paper

DOI: 10.1039/D0CP05732K

New insights on the ESIPT process based on solid-state data and state-of-the-art computational methods

Jean Nunes Laner, Henrique de Castro Silva Junior, Fabiano Severo Rodembusch, Eduardo Ceretta Moreira

2020-12-14 Paper

DOI: 10.1039/D0CP05502F

The role of platinum on the NOx storage and desorption behavior of ceria: an online FT-IR study combined with in situ Raman and UV-vis spectroscopy

Anastasia Filtschew, Pablo Beato, Søren B. Rasmussen, Christian Hess

2020-12-16 Paper

DOI: 10.1039/D0CP05800A

Membrane packing defects in synaptic vesicles recruit complexin and synuclein

Jie Liu, Bing Bu, Michael Crowe, Dechang Li, Jiajie Diao, Baohua Ji

2020-12-18 Paper

DOI: 10.1039/D0CP03546G

Contents list

2021-01-28 Front/Back Matter

DOI: 10.1039/D1CP90013G

Revealing the role of dopants in mitigating degradation phenomena in sodium-ion layered cathodes

Kyoungmin Min, Young-Han Shin

2021-01-20 Paper

DOI: 10.1039/D0CP04974C

Spectroscopic properties of open shell diatomic molecules using Piris natural orbital functionals

Raúl Quintero-Monsebaiz, Luis Ignacio Perea-Ramírez, Alberto Vela

2021-01-14 Paper

DOI: 10.1039/D0CP05430E

Theoretical evidence of the spin–valley coupling and valley polarization in two-dimensional MoSi2X4 (X = N, P, and As)

Haoqiang Ai, Di Liu, Jiazhong Geng, Shuangpeng Wang, Kin Ho Lo

2021-01-21 Paper

DOI: 10.1039/D0CP05926A

Front cover

2021-01-21 Cover

DOI: 10.1039/D1CP90006D

こちらもおすすめ

化合物よくある質問

(S)-四氢呋喃-3-羧酸の物理化学的性質は何ですか?

CAS番号168395-26-4の(S)-四氢呋喃-3-羧酸は、白色の結晶が特徴的な性質を持ちます。分子量は128.08であり、水に溶けやすく、アルコールなど...

168395-26-4(3S)-Tetrahydro-3-fu...
化合物よくある質問

塩基性硫黄化合物1,3-ジメチル-1-[5-(三氟甲基)-1,3,4-硫杂环己二酮-2-基]尿素を含む廃棄物はどのように処理すべきですか?

塩基性硫黄化合物1,3-ジメチル-1-[5-(三氟甲基)-1,3,4-硫杂环己二酮-2-基]尿素を含む廃棄物は、専門的な廃棄処理施設で焼却処理を行うべきです。ま...

25366-23-81,3-Dimethyl-1-[5-(t...
化合物よくある質問

インドリジン-2-カルボン酸は安全ですか?

インドリジン-2-カルボン酸は一般的に安全ですが、過度に濃い状態では刺激性があります。取り扱いには適切な防護具を使用し、直接触れや吸入を避ける必要があります。

3189-48-8Indolizine-2-carboxy...
化合物よくある質問

5-甲基-2-(3-ピリジニル)-1,3-テイゾール-4-オールの市場動向や研究トレンドはどうですか?

5-甲基-2-(3-ピリジニル)-1,3-テイゾール-4-オールは、医薬品や農薬、および合成化学の分野において研究が進められています。市場動向としては、化学物質...

131786-48-65-Methyl-2-(3-pyridi...
化合物よくある質問

4,4',4''-(嘧啶-2,4,6-三基)三苯甲醛はどのように保存すればよいですか?

4,4',4''-(嘧啶-2,4,6-三基)三苯甲醛は、密閉容器に保管し、避けておくことが重要です。室温で保管し、直射日光を避けてください。

2230887-23-54,4',4''-(2,4,6-Pyri...
化合物よくある質問

(3aR)-1,3,3-トリフェニルテトラヒドロ-3H-ピロロ[1,2-c][1,3,2]-オキザボロロールについて、適用される法規ガイドラインは何ですか?

(3aR)-1,3,3-トリフェニルテトラヒドロ-3H-ピロロ[1,2-c][1,3,2]-オキザボロロールは、GHS(国際危険物識別ルール)の分類が適用されま...

145238-45-5(3aR)-1,3,3-Tripheny...
化合物よくある質問

N,N-ジブチルプロパニジアミンの主な用途は何ですか?

N,N-ジブチルプロパニジアミンは主にアクリル酸エステルの固化剤、界面活性剤、及び農薬の製造材料として使用されます。

102-83-0N,N-Dibutyl-1,3-prop...
化合物よくある質問

6-(4-氯苯氧基)吡啶-3-胺の代替品はありますか?

6-(4-氯苯氧基)吡啶-3-胺の代替品としては、他の芳香族アミン化合物や類似の除草剤が考えられます。ただし、他の化合物と同様に、代替品の選択には安全性と効果性...

75926-64-66-(4-Chlorophenoxy)-...
化合物よくある質問

4-甲基伞形酮硬脂酸酯は安全ですか?

4-甲基伞形酮硬脂酸酯は安全性に関しては一定の注意が必要で、直接的な皮膚刺激や吸入毒性は報告されていませんが、吸入は避けるべきです。

79408-85-84-Methyl-2-oxo-2H-ch...
化合物よくある質問

3-フェニル-3,4-ジヒドロ-2H-1,4-ベンゾキサジンを取り扱う際の実験室安全事項は何ですか?

3-フェニル-3,4-ジヒドロ-2H-1,4-ベンゾキサジンを取り扱う際は、防塵マスク、ゴーグル、ゴム手袋を使用し、ドラフトチャンバー内で作業することを推奨しま...

70310-30-43-Phenyl-3,4-dihydro...

掲載誌

Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics
CiteScore: 5.5
自己引用率: 10.3%
年間論文数: 3036

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.

おすすめサプライヤー

免責事項
このページに表示される学術雑誌情報は、参考および研究目的のみを目的としています。当社は雑誌出版社とは提携しておらず、投稿の取り扱いも行っておりません。出版に関するお問い合わせは、各雑誌出版社に直接ご連絡ください。
表示されている情報に誤りがある場合は、support@chemtradehub.com までご連絡ください。迅速に確認し、対応いたします。