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Nuclear dynamics of topoisomerase II beta reflects its catalytic activity that is regulated by binding of RNA to the C-terminal domain

机译:拓扑异构酶IIβ的核动力学反映了其催化活性,该活性受RNA与C末端结构域结合的调节

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DNA topoisomerase II (topo II) changes DNA topology by cleavage/re-ligation cycle(s) and thus contributes to various nuclear DNA transactions. It is largely unknown how the enzyme is controlled in a nuclear context. Several studies have suggested that its C-terminal domain (CTD), which is dispensable for basal relaxation activity, has some regulatory influence. In this work, we examined the impact of nuclear localization on regulation of activity in nuclei. Specifically, human cells were transfected with wild-type and mutant topo II beta tagged with EGFP. Activity attenuation experiments and nuclear localization data reveal that the endogenous activity of topo II beta is correlated with its subnuclear distribution. The enzyme shuttles between an active form in the nucleoplasm and a quiescent form in the nucleolus in a dynamic equilibrium. Mechanistically, the process involves a tethering event with RNA. Isolated RNA inhibits the catalytic activity of topo II beta in vitro through the interaction with a specific 50-residue region of the CTD (termed the CRD). Taken together, these results suggest that both the subnuclear distribution and activity regulation of topo II beta are mediated by the interplay between cellular RNA and the CRD.
机译:DNA拓扑异构酶II(拓扑II)通过切割/重新连接循环改变DNA拓扑结构,因此有助于各种核DNA交易。在核环境中如何控制该酶在很大程度上是未知的。几项研究表明,其C末端结构域(CTD)对基础松弛活性是必不可少的,它具有一定的调节作用。在这项工作中,我们研究了核定位对调节核活动的影响。具体而言,将人类细胞用野生型和用EGFP标记的突变topo II beta转染。活性衰减实验和核定位数据表明,topo II beta的内源活性与其亚核分布有关。酶以动态平衡在核仁中的活性形式和核仁中的静止形式之间穿梭。从机械上讲,该过程涉及与RNA的系链事件。分离的RNA通过与CTD特定的50个残基区域(称为CRD)的相互作用,在体外抑制topo II beta的催化活性。综上所述,这些结果表明,topo II beta的亚核分布和活性调节均由细胞RNA和CRD之间的相互作用介导。

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