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利用磁镊解析由Rmi1调节的人类拓扑异构酶IIIα活性。

Deciphering the human TopIIIα activity modulated by Rmi1 using magnetic tweezers.

作者信息

Yun Long, Garnier Florence, Strick Terence R, Nadal Marc

机构信息

Institut de Biologie de l'Ecole Normale Supérieure (IBENS), Ecole Normale Supérieure, PSL University, INSERM, CNRS, Paris 75005, France.

Université de Versailles Saint-Quentin-en-Yvelines, Versailles 78000, France.

出版信息

Nucleic Acids Res. 2025 Apr 22;53(8). doi: 10.1093/nar/gkaf308.

Abstract

Topoisomerases IA (TopoIAs) are universal and essential enzymes present in the three domains of life. Most of the Metazoa exhibit two TopoIAs-TopIIIα and TopIIIβ-assuming different roles in the cell. TopIIIα is essential for genome stability by disentangling precatenanes and hemicatenanes during DNA replication or dissolving the double Holliday junctions in recombination, with the help of several partners, such as Rmi1. However, the detail of the TopIIIα enzymatic cycle and the precise role of Rmi1 remain essentially unknown. The single-molecule approach allows to deconvolute the different early reaction steps and distinguish between intrinsic catalytic characteristics of human TopIIIα that are invariable and those that can be modulated by Rmi1. We determined that the limiting step is the TopIIIα-DNA binding, which requires a small single-stranded region. TopIIIα punctuates its catalytic cycle with long pause times to stabilize the open cleaved complex. Rmi1 helps TopIIIα trap the single-stranded DNA and therefore greatly increases the efficiency of the binding step. Rmi1 also enhances the stabilization of the open cleaved complex to favour intermolecular reactions with improved discrimination of DNA substrates. Rmi1 is therefore a crucial partner for TopIIIα in ensuring that the DNA transaction processes run smoothly in vivo.

摘要

拓扑异构酶IA(TopoIAs)是存在于生命三个域中的普遍且必需的酶。大多数后生动物表现出两种TopoIAs——TopIIIα和TopIIIβ——在细胞中发挥不同作用。TopIIIα通过在DNA复制过程中解开前连环体和半连环体或在重组中溶解双Holliday连接点来维持基因组稳定性,这一过程借助了几个伴侣蛋白,如Rmi1。然而,TopIIIα酶促循环的细节以及Rmi1的确切作用基本上仍不清楚。单分子方法能够解析不同的早期反应步骤,并区分人类TopIIIα不变的内在催化特性和可被Rmi1调节的特性。我们确定限速步骤是TopIIIα与DNA的结合,这需要一个小的单链区域。TopIIIα通过长时间的暂停来打断其催化循环,以稳定开放的切割复合物。Rmi1帮助TopIIIα捕获单链DNA,因此极大地提高了结合步骤的效率。Rmi1还增强了开放切割复合物的稳定性,以促进分子间反应,并提高对DNA底物的辨别能力。因此,Rmi1是TopIIIα在确保DNA交易过程在体内顺利进行方面的关键伴侣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69e1/12016800/709af3af74c7/gkaf308figgra1.jpg

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