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首页> 外文期刊>The Journal of Chemical Physics >Base-pair interactions in the gas-phase proton-bonded complexes of C~+G and C~+GC
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Base-pair interactions in the gas-phase proton-bonded complexes of C~+G and C~+GC

机译:C〜+ G和C〜+ GC气相质子键合配合物中的碱基对相互作用

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Interactions involved in the formation of gas-phase proton-bonded molecular complexes of cytosine(C)and guanine(G)were theoretically investigated for the case of C~+G and C~+GC using B3LYP density functional theory.In this study,particular focus was on the dimeric interaction of proton-bonded C~+G,where a proton bond and a hydrogen bond are cooperatively involved.The dimer interaction energy in terms of dissociation energy(D_e)was predicted to be 41.8 kcal/mol.The lowest(frozen)energy,structure for the C~+G dimeric complex was found to be CH~+...G rather than C...H~+G in spite of the lower proton affinity of the cytosine moiety,which was more stable by 3.3 kcal/mol.The predicted harmonic vibrational frequencies and bond lengths suggest that the combined contributions of proton and hydrogen bonding may determine the resultant stability of each complex structure.In contrast to the dimer case,in the case of the isolated C~+GC triplet,the two minimum energy structures of CH~+...GC and C...H~+GC were predicted to be almost equivalent in total energy.The dissociation energy(D_e)for the C~+G pairing in the C~+GC triplet was 43.7 kcal/mol.Other energetics are also reported.As for the proton-transfer reaction in the proton-bond axis,the forward proton-transfer barriers for the dimer and trimer complexes were also predicted to be very low,3.6 and 1.5 kcal/mol(DELTA E_e~(PT)),respectively.? 2007American Institute of Physics.[DOI:10.1063/1.2817604]
机译:本文利用B3LYP密度泛函理论,对C〜+ G和C〜+ GC的情况,从理论上研究了胞嘧啶(C)和鸟嘌呤(G)气相质子键合分子复合物形成过程中的相互作用。质子键合的C〜+ G的二聚体相互作用特别受质子键和氢键的共同作用。据解离能(D_e)预测,二聚体相互作用能为41.8 kcal / mol。尽管胞嘧啶部分的质子亲和力较低,但C〜+ G二聚体复合物的最低(冻结)能量,结构为CH〜+ ... G而不是C ... H〜+ G。在3.3 kcal / mol时更稳定。预测的谐波振动频率和键长表明,质子和氢键的结合贡献可能决定每个复杂结构的最终稳定性。与二聚体情况相反,在孤立C的情况下〜+ GC三重态,CH〜+ ... GC和C ...的两个最小能量结构预测H〜+ GC的总能量几乎相等.C〜+ GC三重态中C〜+ G配对的解离能(D_e)为43.7 kcal / mol,还报道了其他高能态。在质子键轴上的-转移反应中,二聚体和三聚体的正向质子转移势垒也分别很低,分别为3.6和1.5 kcal / mol(ΔE_e〜(PT))。 2007年美国物理研究所。[DOI:10.1063 / 1.2817604]

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