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Topoisomerase V relaxes supercoiled DNA by a constrained swiveling mechanism

机译:拓扑异构酶V通过受限的旋转机制使超螺旋DNA松弛

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摘要

Topoisomerase V is a type I topoisomerase without structural or sequence similarities to other topoisomerases. Although it belongs to the type I subfamily of topoisomerases, it is unrelated to either type IA or IB enzymes. We used real-time single-molecule micromechanical experiments to show that topoisomerase V relaxes DNA via events that release multiple DNA turns, employing a constrained swiveling mechanism similar to that for type IB enzymes. Relaxation is powered by the torque in the supercoiled DNA and is constrained by friction between the protein and the DNA. Although all type IB enzymes share a common structure and mechanism and type IA and type II enzymes show marked structural and functional similarities, topoisomerase V represents a different type of topoisomerase that relaxes DNA in a similar overall manner as type IB molecules but by using a completely different structural and mechanistic framework.
机译:拓扑异构酶V是I型拓扑异构酶,与其他拓扑异构酶的结构或序列相似。尽管它属于拓扑异构酶的I型亚家族,但与IA或IB型酶均无关。我们使用实时单分子微机械实验显示拓扑异构酶V通过释放多个DNA转弯的事件使DNA松弛,并采用了类似于IB型酶的约束旋转机制。松弛由超螺旋DNA中的扭矩提供动力,并受蛋白质和DNA之间的摩擦力约束。尽管所有IB型酶都具有相同的结构和机制,IA型和II型酶显示出明显的结构和功能相似性,但拓扑异构酶V代表另一种拓扑异构酶,该拓扑异构酶以与IB型分子相似的总体方式使DNA松弛,但通过完全使用不同的结构和机制框架。

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