Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Chemistry Research Laboratory, Department of Chemistry, University of Oxford, 12 Mansfield Road, Oxford OX1 3TA, UK.
Nucleic Acids Res. 2019 Oct 10;47(18):9696-9707. doi: 10.1093/nar/gkz696.
Ubiquitous Structural Maintenance of Chromosomes (SMC) complexes use a proteinaceous ring-shaped architecture to organize and individualize chromosomes, thereby facilitating chromosome segregation. They utilize cycles of adenosine triphosphate (ATP) binding and hydrolysis to transport themselves rapidly with respect to DNA, a process requiring protein conformational changes and multiple DNA contact sites. By analysing changes in the architecture and stoichiometry of the Escherichia coli SMC complex, MukBEF, as a function of nucleotide binding to MukB and subsequent ATP hydrolysis, we demonstrate directly the formation of dimer of MukBEF dimer complexes, dependent on dimeric MukF kleisin. Using truncated and full length MukB, in combination with MukEF, we show that engagement of the MukB ATPase heads on nucleotide binding directs the formation of dimers of heads-engaged dimer complexes. Complex formation requires functional interactions between the C- and N-terminal domains of MukF with the MukB head and neck, respectively, and MukE, which organizes the complexes by stabilizing binding of MukB heads to MukF. In the absence of head engagement, a MukF dimer bound by MukE forms complexes containing only a dimer of MukB. Finally, we demonstrate that cells expressing MukBEF complexes in which MukF is monomeric are Muk-, with the complexes failing to associate with chromosomes.
普遍存在的结构维护染色体 (SMC) 复合物利用蛋白质环状结构来组织和个体化染色体,从而促进染色体分离。它们利用腺苷三磷酸 (ATP) 结合和水解的循环,相对于 DNA 快速运输自身,这个过程需要蛋白质构象变化和多个 DNA 接触位点。通过分析大肠杆菌 SMC 复合物 MukBEF 的结构和化学计量的变化,作为 MukB 与随后的 ATP 水解结合核苷酸的函数,我们直接证明了 MukBEF 二聚体复合物的二聚体的形成,依赖于二聚体 MukF 连接酶。使用截断和全长 MukB,结合 MukEF,我们表明 MukB ATP 酶头部在核苷酸结合时的参与指导头部参与的二聚体复合物的二聚体的形成。复合物的形成需要 MukF 的 C-和 N-末端结构域与 MukB 头部和颈部之间的功能相互作用,以及 MukE,它通过稳定 MukB 头部与 MukF 的结合来组织复合物。在没有头部参与的情况下,MukE 结合的 MukF 二聚体形成仅包含 MukB 二聚体的复合物。最后,我们证明在表达 MukF 单体的 MukBEF 复合物的细胞中,复合物与染色体无法结合。