首页> 美国卫生研究院文献>Nucleic Acids Research >Base-base mismatches. Thermodynamics of double helix formation for dCA3XA3G + dCT3YT3G (X Y = ACGT).
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Base-base mismatches. Thermodynamics of double helix formation for dCA3XA3G + dCT3YT3G (X Y = ACGT).

机译:基基不匹配。 dCA3XA3G + dCT3YT3G(XY = ACGT)的双螺旋形成的热力学。

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摘要

Thermodynamic parameters for double strand formation have been measured for the sixteen double helices of the sequence dCA3XA3G.dCT3YT3G, with each of the bases A, C, G and T at the positions labelled X and Y. The results are analyzed in terms of nearest-neighbors and are compared with thermodynamic parameters for RNA secondary structure. At room temperature the sequence (Formula: see text) is more stable than (Formula: see text) and is similar in stability to (Formula: see text) and (Formula: see text) are least stable. At higher temperatures the sequences containing a G.C base pair become more stable than those containing only A.T. All molecules containing mismatches are destabilized with respect to those with only Watson-Crick pairing, but there is a wide range of destabilization. At room temperature the most stable mismatches are those containing guanine (G.T, G.G, G.A); the least stable contain cytosine (C.A, C.C). At higher temperatures pyrimidine-pyrimidine mismatches become the least stable.
机译:已测量了dCA3XA3G.dCT3YT3G序列的16个双螺旋的双链形成的热力学参数,每个碱基A,C,G和T分别位于标记X和Y的位置。并与RNA二级结构的热力学参数进行比较。在室温下,序列(公式:参见文本)比(公式:参见文本)更稳定,并且在稳定性上类似于(公式:参见文本)和(公式:参见文本)最不稳定。在较高温度下,含有G.C碱基对的序列比仅含有A.T.的序列更稳定。相对于只有沃森-克里克配对的分子,所有包含错配的分子都不稳定,但是不稳定的范围很广。在室温下,最稳定的错配是含有鸟嘌呤的错配(G.T,G.G,G.A);最不稳定的是含有胞嘧啶(C.A,C.C)。在较高温度下,嘧啶-嘧啶错配变得最不稳定。

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