Institute of Biochemical Sciences, National Taiwan University, 10617 Taipei, Taiwan.
Institute of Biochemistry and Molecular Biology, College of Medicine, National Taiwan University, 100233 Taipei, Taiwan.
Nucleic Acids Res. 2024 May 8;52(8):4541-4555. doi: 10.1093/nar/gkae181.
Formation of programmed DNA double-strand breaks is essential for initiating meiotic recombination. Genetic studies on Arabidopsis thaliana and Mus musculus have revealed that assembly of a type IIB topoisomerase VI (Topo VI)-like complex, composed of SPO11 and MTOPVIB, is a prerequisite for generating DNA breaks. However, it remains enigmatic if MTOPVIB resembles its Topo VI subunit B (VIB) ortholog in possessing robust ATPase activity, ability to undergo ATP-dependent dimerization, and activation of SPO11-mediated DNA cleavage. Here, we successfully prepared highly pure A. thaliana MTOPVIB and MTOPVIB-SPO11 complex. Contrary to expectations, our findings highlight that MTOPVIB differs from orthologous Topo VIB by lacking ATP-binding activity and independently forming dimers without ATP. Most significantly, our study reveals that while MTOPVIB lacks the capability to stimulate SPO11-mediated DNA cleavage, it functions as a bona fide DNA-binding protein and plays a substantial role in facilitating the dsDNA binding capacity of the MOTOVIB-SPO11 complex. Thus, we illustrate mechanistic divergence between the MTOPVIB-SPO11 complex and classical type IIB topoisomerases.
形成程序性 DNA 双链断裂对于启动减数分裂重组至关重要。对拟南芥和小家鼠的遗传研究表明,由 SPO11 和 MTOPVIB 组成的 IIB 型拓扑异构酶 VI(Topo VI)样复合物的组装是产生 DNA 断裂的先决条件。然而,MTOPVIB 是否与它的 Topo VI 亚基 B(VIB)同源物具有强大的 ATP 酶活性、能够进行 ATP 依赖性二聚化以及激活 SPO11 介导的 DNA 切割能力,这仍然是一个谜。在这里,我们成功地制备了高度纯化的拟南芥 MTOPVIB 和 MTOPVIB-SPO11 复合物。与预期相反,我们的发现强调了 MTOPVIB 与同源的 Topo VIB 的不同之处在于缺乏 ATP 结合活性,并且可以在没有 ATP 的情况下独立形成二聚体。最重要的是,我们的研究表明,虽然 MTOPVIB 缺乏刺激 SPO11 介导的 DNA 切割的能力,但它作为一种真正的 DNA 结合蛋白,在促进 MOTOVIB-SPO11 复合物与 dsDNA 结合能力方面发挥着重要作用。因此,我们说明了 MTOPVIB-SPO11 复合物与经典的 IIB 型拓扑异构酶之间的机制差异。