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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Hydration of the Lowest Triplet States of the DNA/RNA Pyrimidines
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Hydration of the Lowest Triplet States of the DNA/RNA Pyrimidines

机译:DNA / RNA嘧啶的最低三重态水合

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The effects of hydration on the lowest triplet states of the DNA/RNA pyrimidines have been studied by including one and two water molecules explicitly. Three configurations for the singly hydrated cytosine moiety were located, and six for the doubly hydrated system. For thymine and uracil, four singly and eight doubly hydrated structures were found. The singlet-triplet energy gaps of all three pyrimidines (cytosine, thymine, and uracil) fall in the low-energy range of ultraviolet radiation (UVA). Energetic excited states can be a step leading to lesions in DNA, such as a mismatched base pairs. Although the adiabatic and vertical electronic excitation energies for all three pyrimidines slightly increase upon inclusion of additional water molecules, this effect upon the excitation energies is much smaller than hydration effects upon the electron affinities and ionization energies of the three nucleobases. Because both the ground state and the triplet state are neutral, the hydration energy difference between the two states is not significant (compared to those between the neutral and charged species), making the excitation energy less sensitive to hydration.
机译:通过明确包括一个和两个水分子,研究了水合对DNA / RNA嘧啶的最低三联体状态的影响。定位了单水合胞嘧啶部分的三种构型,双水合系统有六种构型。对于胸腺嘧啶和尿嘧啶,发现了四个单水合物和八个双水合结构。所有三种嘧啶(胞嘧啶,胸腺嘧啶和尿嘧啶)的单重态-三重态能隙都在紫外线(UVA)的低能范围内。高能激发态可能是导致DNA损伤(例如碱基对错配)的步骤。尽管在加入额外的水分子后,所有三个嘧啶的绝热和垂直电子激发能略有增加,但是对激发能的这种影响远小于对三个核碱基的电子亲和力和电离能的水合作用。由于基态和三重态都处于中性状态,因此两个状态之间的水合能差并不显着(与中性和带电物质之间的水合能差相比),从而使激发能对水合的敏感性降低。

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