McCampbell C R, Wartell R M, Plaskon R R
Biopolymers. 1989 Oct;28(10):1745-58. doi: 10.1002/bip.360281008.
The influence of inverted repeat sequences on the melting transitions of linear DNAs has been examined. Derivative melting curves (DMC) of a 514 base pair (bp) DNA, seven subfragments of this DNA, and four other DNAs have been compared to predictions of DNA melting theory. The 514-bp DNA contains three inverted repeat sequences that can form cruciform structures in supercoiled DNA. We refer to these sequences as c-inverted repeats. Previous work showed that the DMC of this DNA, unlike a number of other DNAs, is not accurately predicted by DNA melting theory. Since the theoretical model does not include hairpin-like structures, it was suggested that hairpin or cruciform formation in these inverted repeats may be responsible for this discrepancy. Our results support this hypothesis. Predicted DMCs are in good agreement with DNAs with no inverted repeats, or inverted repeats not evident in supercoiled DNA. Differences between the theoretical and experimental Tm's are less than or equal to 0.3 degrees C. DNA molecules that contain one or more of the three c-inverted repeats are not as accurately predicted. Experimental Tm values are lower than predicted values by 0.7-3.8 degrees C. It is concluded that some inverted repeat sequences can form hairpin-like structures during the melting of linear DNAs. These structures appear to lower overall DNA stability.
已研究了反向重复序列对线性DNA解链转变的影响。将一个514碱基对(bp)的DNA、该DNA的七个亚片段以及其他四个DNA的导数解链曲线(DMC)与DNA解链理论的预测结果进行了比较。这个514 bp的DNA包含三个反向重复序列,它们在超螺旋DNA中可形成十字形结构。我们将这些序列称为c - 反向重复序列。先前的研究表明,与许多其他DNA不同,该DNA的DMC不能被DNA解链理论准确预测。由于理论模型未包含发夹样结构,因此有人提出这些反向重复序列中发夹或十字形结构的形成可能是造成这种差异的原因。我们的结果支持这一假设。预测的DMC与没有反向重复序列或在超螺旋DNA中不明显的反向重复序列的DNA吻合良好。理论和实验熔解温度(Tm)之间的差异小于或等于0.3摄氏度。含有三个c - 反向重复序列中一个或多个的DNA分子预测不准确。实验Tm值比预测值低0.7 - 3.8摄氏度。得出的结论是,一些反向重复序列在线性DNA解链过程中可形成发夹样结构。这些结构似乎会降低DNA的整体稳定性。