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A theoretical study of anthracene and phenanthrene derivatives acting as A-T specific intercalators.

机译:蒽和菲衍生物作为A-T特定嵌入剂的理论研究。

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摘要

Theoretical computations are performed on the comparative A-T versus G-C binding selectivities of two DNA intercalating molecules recently synthesized by Wilson et al. These are derivatives of phenanthrene and anthracene with side chains containing an hydroxy group bound to its C alpha carbon and a cationic amino group bound to its C beta carbon. We have optimized the binding energies of these phenanthrene and anthracene derivatives (1 and 2, respectively) to the double-stranded tetramers d(ATAT)2 and d(GCGC)2, the intercalation occurring in the central pyrimidine (3'-5') purine sequence. The sum of the intercalator-oligonucleotide intermolecular interaction energy plus the conformational energy variation of the intercalator upon binding were computed by the SIBFA procedures, which use empirical formulas based on ab initio SCF computations. Both compounds are found to bind more favourably to the AT sequence than to the GC one. Moreover, the affinity of 1 for the AT oligomer is computed to be larger than that of 2, whereas conversely that of 2 is larger than that of 1 for the GC oligomer. The AT versus GC binding selectivity of 1 is significantly larger than that of 2. These results are in excellent agreement with the experimental findings of Wilson et al. However, contrary to the suggestion of these authors the alpha-hydroxy group of the side chain of the intercalators does not seem to play a decisive role in determining the A-T specificity.
机译:理论计算是根据Wilson等人最近合成的两个DNA嵌入分子的A-T与G-C的对比结合选择性进行的。它们是菲和蒽的衍生物,其侧链包含结合到其Cα碳的羟基和结合到其Cβ碳的阳离子氨基。我们优化了这些菲和蒽衍生物(分别为1和2)与双链四聚体d(ATAT)2和d(GCGC)2的结合能,插层发生在中央嘧啶(3'-5' )嘌呤序列。嵌入剂-寡核苷酸分子间相互作用能的总和加上结合时嵌入剂的构象能变化,是通过SIBFA程序计算的,该程序使用从头算SCF计算的经验公式。发现这两种化合物与AT序列的结合比与GC序列的结合更有利。此外,计算出的1对AT低聚物的亲和力大于2的亲和力,反之,对GC低聚物的2的亲和力大于1。 1对AT与GC的结合选择性显着大于2。这些结果与Wilson等人的实验发现非常吻合。然而,与这些作者的建议相反,嵌入剂侧链的α-羟基似乎在确定A-T特异性中没有决定性作用。

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