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2'-脱氧糖基对吖啶内 SDS 胶束中腺嘌呤和腺苷的激发态质子化平衡的影响:量子化学计算的时间分辨研究。

Influence of 2'-deoxy sugar moiety on excited-state protonation equilibrium of adenine and adenosine with acridine inside SDS micelles: a time-resolved study with quantum chemical calculations.

机构信息

Chemical Sciences Division, Saha Institute of Nuclear Physics, Bidhannagar, Kolkata, India.

出版信息

Chemphyschem. 2012 Feb;13(2):525-34. doi: 10.1002/cphc.201100763. Epub 2012 Jan 13.

Abstract

The protonation dynamics of the DNA base adenine (Ade) and its nucleoside 2'-deoxyadenosine (d-Ade) are investigated by monitoring the deprotonation kinetics of an N-heterocyclic DNA intercalator, acridine (Acr), in the confined environment of sodium dodecyl sulfate (SDS) micelles. Protonation of acridine (AcrH(+)) occurs at the hydrophilic interface and this species remains in dynamic equilibrium with its deprotonated counterpart (Acr) inside the hydrophobic core of SDS micelles. Quenching of the fluorescence of AcrH(+)* at 478 nm is observed after addition of Ade and d-Ade with Stern-Volmer constant (K(SV)) 298 and 75 M(-1), respectively, with a concomitant increment in Acr* at 425 nm. Time-resolved fluorescence studies reveal quenching in the lifetime of AcrH(+). The relative amplitude of AcrH(+) decreases from 0.97 to 0.51 and 0.97 to 0.89 with equimolar addition of Ade and d-Ade, respectively. These observations are explained by excited-state proton transfer (ESPT) from AcrH(+)* to the bases. The reduced K(SV) value and negligible change in the relative amplitudes of AcrH(+)* with d-Ade infer that ESPT is hindered substantially by the presence of a 2'-deoxy sugar unit. Transient time-resolved absorption spectra of Acr reflect that Ade reduces the absorbance of (3)AcrH(+); however, d-Ade keeps it unaltered for more than a time delay of 2 μs. The optimized geometries calculated by quantum chemical methods reflect deprotonation of AcrH(+) with protonation at the N1 position of Ade, while it remains protonated with d-Ade. The hindered ESPT between AcrH(+)* and d-Ade singles out the significance of the 2'-deoxy sugar moiety in controlling the deprotonation kinetics.

摘要

研究人员通过监测 N-杂环 DNA 嵌入剂吖啶(Acr)在十二烷基硫酸钠(SDS)胶束的受限环境中的去质子化动力学,研究了 DNA 碱基腺嘌呤(Ade)及其核苷 2'-脱氧腺苷(d-Ade)的质子化动态。吖啶(AcrH(+))的质子化发生在亲水性界面,该物种与其去质子化对应物(Acr)在 SDS 胶束的疏水性核心内保持动态平衡。吖啶(AcrH(+))在 478nm 处的荧光猝灭在加入 Ade 和 d-Ade 后观察到,Stern-Volmer 常数(K(SV))分别为 298 和 75M(-1),同时在 425nm 处出现 Acr*的伴随增量。时间分辨荧光研究表明,AcrH(+) *的荧光寿命发生猝灭。吖啶(AcrH(+))的相对振幅从 0.97 降低到 0.51 和 0.97 降低到 0.89,分别与 Ade 和 d-Ade 的等摩尔加入相对应。这些观察结果可以通过 AcrH(+) *从激发态质子转移(ESPT)到碱基来解释。K(SV) 值降低以及 d-Ade 存在时 AcrH(+) *的相对幅度几乎没有变化,表明 2'-脱氧糖单元的存在大大阻碍了 ESPT。吖啶(Acr)的瞬态时间分辨吸收光谱表明 Ade 降低了(3)AcrH(+) *的吸光度;然而,d-Ade 使其在超过 2μs 的时间延迟后保持不变。量子化学方法计算的优化几何结构反映了 AcrH(+) *的去质子化,质子化发生在 Ade 的 N1 位置,而与 d-Ade 保持质子化。AcrH(+) *与 d-Ade 之间受阻的 ESPT 突显了 2'-脱氧糖部分在控制去质子化动力学中的重要性。

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