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Essential dynamics of DNA containing a cis.syn cyclobutane thymine dimer lesion.

机译:包含顺式环丁烷胸腺嘧啶二聚体损伤的DNA的基本动力学。

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摘要

Conformational properties of a UV-damaged DNA decamer containing a cis.syn cyclobutane thymine dimer (PD) have been investigated by molecular dynamics (MD) simulations. Results from MD simulations of the damaged decamer DNA show a kink of approximately 21.7 degrees at the PD damaged site and a disruption of H bonding between the 5'-thymine of the PD and its complementary adenine. However, no extra-helical flipping of the 3'-adenine complementary to the PD was observed. Comparison to two undamaged DNA decamers, one with the same sequence and the other with an AT replacing the TT sequence, indicates that these properties are specific to the damaged DNA. Essential dynamics (ED) derived from the MD trajectories of the three DNAs show that the backbone phosphate between the two adenines complementary to the PD of the damaged DNA has considerably larger mobility than the rest of the molecule and occurs only in the damaged DNA. As observed in the crystal structure of T4 endonuclease V in a complex with the damaged DNA, the interaction of the enzyme with the damaged DNA can lead to bending along the flexible joint and to induction of adenine flipping into an extra-helical position. Such motions may play an important role in damage recognition by repair enzymes.
机译:通过分子动力学(MD)模拟研究了含有顺式顺式环丁烷胸腺嘧啶二聚体(PD)的紫外线损坏的DNA十聚体的构象性质。受损的十聚体DNA的MD模拟结果表明,PD受损部位的扭结约为21.7度,PD的5'-胸腺嘧啶与其互补腺嘌呤之间的氢键断裂。然而,没有观察到与PD互补的3'-腺嘌呤的螺旋外翻转。与两个未损坏的DNA十聚体进行比较,一个具有相同的序列,另一个具有用AT代替TT序列的AT,表明这些性质对受损的DNA具有特异性。从三个DNA的MD轨迹得出的基本动力学(ED)表明,两个腺嘌呤之间的骨架磷酸盐与受损DNA的PD互补,其迁移率比分子其余部分大得多,并且仅在受损DNA中发生。如在具有受损DNA的复合物中的T4核酸内切酶V的晶体结构中所观察到的,该酶与受损DNA的相互作用可以导致沿着柔性接头的弯曲并导致腺嘌呤翻转成螺旋外位置。这种运动可能在修复酶对损伤的识别中起重要作用。

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