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Recovery of the poisoned topoisomerase II for DNA religation: coordinated motion of the cleavage core revealed with the microsecond atomistic simulation

机译:回收中毒的拓扑异构酶II以进行DNA连接:微秒原子模拟显示裂解核的协调运动

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摘要

Type II topoisomerases resolve topological problems of DNA double helices by passing one duplex through the reversible double-stranded break they generated on another duplex. Despite the wealth of information in the cleaving operation, molecular understanding of the enzymatic DNA ligation remains elusive. Topoisomerase poisons are widely used in anti-cancer and anti-bacterial therapy and have been employed to entrap the intermediates of topoisomerase IIβ with religatable DNA substrate. We removed drug molecules from the structure and conducted molecular dynamics simulations to investigate the enzyme-mediated DNA religation. The drug-unbound intermediate displayed transitions toward the resealing-compliant configuration: closing distance between the cleaved DNA termini, B-to-A transformation of the double helix, and restoration of the metal-binding motif. By mapping the contact configurations and the correlated motions between enzyme and DNA, we identified the indispensable role of the linker preceding winged helix domain (WHD) in coordinating the movements of TOPRIM, the nucleotide-binding motifs, and the bound DNA substrate during gate closure. We observed a nearly vectorial transition in the recovery of the enzyme and identified the previously uncharacterized roles of Asn508 and Arg677 in DNA rejoining. Our findings delineate the dynamic mechanism of the DNA religation conducted by type II topoisomerases.
机译:II型拓扑异构酶通过使一个双链体通过另一双链体产生的可逆双链断裂,解决了DNA双螺旋的拓扑问题。尽管在裂解操作中有大量信息,但是对酶促DNA连接的分子理解仍然难以捉摸。拓扑异构酶毒物被广泛用于抗癌和抗菌治疗,并已被用于捕获拓扑异构酶IIβ的中间体和可释放的DNA底物。我们从结构中去除了药物分子,并进行了分子动力学模拟,以研究酶介导的DNA连接。药物未结合的中间体显示出向着重新密封的构型过渡:裂解的DNA末端之间的闭合距离,双螺旋的B-to-A转化以及金属结合基序的恢复。通过绘制接触构型以及酶和DNA之间的相关运动,我们确定了有翼螺旋结构域(WHD)之前的接头在门关闭过程中协调TOPRIM,核苷酸结合基序和结合的DNA底物的运动中的必不可少的作用。 。我们在酶的回收中观察到几乎矢量的过渡,并确定了Asn508和Arg677在DNA重新结合中以前未表征的作用。我们的发现描述了由II型拓扑异构酶进行的DNA连接的动力学机制。

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