Lando D Y, Fridman A S, Kabak A G, Akhrem A A
Institute of Bioorganic Chemistry, Belarus Academy of Sciences, Minsk, Belarus.
J Biomol Struct Dyn. 1997 Aug;15(1):141-50. doi: 10.1080/07391102.1997.10508953.
In the previous paper (D.Y. Lando, J. Biomol. Struct. Dynam, 15, 129-140 (1997)) the melting of cross-linked DNA with N base pairs and omega interstrand cross-links has been considered theoretically. In the present study on the basis of these results, two simple schemes are developed for the computation of melting curves of cross-linked DNA. The investigation of influence of interstrand linking on DNA stability has been carried out by computer simulation. It is shown that the relative concentration of cross-links, CCT = omega/N, their distribution along a DNA molecule, and particular values of the entropy factors of small loops formed by cross-links in melted regions strongly affect the DNA melting temperature, Tm. On the contrary, for DNA without cross-links, a ten-fold increase or decrease in the entropy factors of small loops does not cause the Tm variation. The comparison of the results of calculation with experimental data suggests that the majority of types of cross-link neither maintain ordered parallel orientation of bases in melted regions nor increase considerably the thermostability of cross-linked base pairs. Four different ways of influence of interstrand cross-linking on the DNA double helix stability are considered. It is shown that cross-linking significantly enhances the influence of single strand stiffness in melted regions on DNA melting behavior.
在前一篇论文(D.Y. 兰多,《生物分子结构与动力学杂志》,15卷,129 - 140页(1997年))中,已从理论上考虑了具有N个碱基对和ω个链间交联的交联DNA的解链情况。在本研究中,基于这些结果,开发了两种简单的方案来计算交联DNA的解链曲线。通过计算机模拟研究了链间交联对DNA稳定性的影响。结果表明,交联的相对浓度CCT = ω/N、它们沿DNA分子的分布以及由解链区域中的交联形成的小环的熵因子的特定值,对DNA解链温度Tm有强烈影响。相反,对于无交联的DNA,小环的熵因子增加或减少十倍都不会导致Tm变化。计算结果与实验数据的比较表明,大多数类型的交联既不能维持解链区域中碱基的有序平行取向,也不会显著提高交联碱基对的热稳定性。考虑了链间交联对DNA双螺旋稳定性的四种不同影响方式。结果表明,交联显著增强了解链区域中单链刚性对DNA解链行为的影响。