CASPUR Inter-University Consortium for the Application of Super-Computing for Universities and Research, Rome, Italy.
PLoS One. 2012;7(12):e51354. doi: 10.1371/journal.pone.0051354. Epub 2012 Dec 6.
Long-duration comparative molecular dynamics simulations of the DNA-topoisomerase binary and DNA-topoisomerase-indenoisoquinoline ternary complexes have been carried out. The analyses demonstrated the role of the drug in conformationally stabilizing the protein-DNA interaction. In detail, the protein lips, clamping the DNA substrate, interact more tightly in the ternary complex than in the binary one. The drug also reduces the conformational space sampled by the protein linker domain through an increased interaction with the helix bundle proximal to the active site. A similar alteration of linker domain dynamics has been observed in a precedent work for topotecan but the molecular mechanisms were different if compared to those described in this work. Finally, the indenoisoquinoline keeps Lys532 far from the DNA, making it unable to participate in the religation reaction, indicating that both short- and long-range interactions contribute to the drug poisoning effect.
已对 DNA-拓扑异构酶二元复合物和 DNA-拓扑异构酶-吲哚并异喹啉三元复合物进行了长时程比较分子动力学模拟。分析表明,该药物在构象上稳定了蛋白-DNA 相互作用。具体而言,夹在 DNA 底物上的蛋白唇在三元复合物中的相互作用比在二元复合物中更紧密。该药物还通过与靠近活性位点的螺旋束的增加相互作用,减少了蛋白连接域所采样的构象空间。在拓扑替康的先前工作中也观察到了连接域动力学的类似改变,但与本工作中描述的分子机制不同。最后,吲哚并异喹啉使 Lys532 远离 DNA,使其无法参与连接反应,表明短程和远程相互作用都有助于药物中毒效应。