National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Kamenice 5, 62500, Brno, Czech Republic.
Mendel Centre for Plant Genomics and Proteomics, Central European Institute of Technology, Masaryk University, Kamenice 5, 62500, Brno, Czech Republic.
Sci Rep. 2020 Jun 16;10(1):9694. doi: 10.1038/s41598-020-66647-w.
The SMC (Structural Maintenance of Chromosomes) complexes are composed of SMC dimers, kleisin and kleisin-interacting (HAWK or KITE) subunits. Mutual interactions of these subunits constitute the basal architecture of the SMC complexes. In addition, binding of ATP molecules to the SMC subunits and their hydrolysis drive dynamics of these complexes. Here, we developed new systems to follow the interactions between SMC5/6 subunits and the relative stability of the complex. First, we show that the N-terminal domain of the Nse4 kleisin molecule binds to the SMC6 neck and bridges it to the SMC5 head. Second, binding of the Nse1 and Nse3 KITE proteins to the Nse4 linker increased stability of the ATP-free SMC5/6 complex. In contrast, binding of ATP to SMC5/6 containing KITE subunits significantly decreased its stability. Elongation of the Nse4 linker partially suppressed instability of the ATP-bound complex, suggesting that the binding of the KITE proteins to the Nse4 linker constrains its limited size. Our data suggest that the KITE proteins may shape the Nse4 linker to fit the ATP-free complex optimally and to facilitate opening of the complex upon ATP binding. This mechanism suggests an important role of the KITE subunits in the dynamics of the SMC5/6 complexes.
SMC(染色体结构维持)复合物由 SMC 二聚体、kleisin 和 kleisin 相互作用(HAWK 或 KITE)亚基组成。这些亚基的相互作用构成了 SMC 复合物的基本结构。此外,ATP 分子与 SMC 亚基的结合及其水解驱动这些复合物的动力学。在这里,我们开发了新的系统来跟踪 SMC5/6 亚基之间的相互作用和复合物的相对稳定性。首先,我们表明 Nse4 kleisin 分子的 N 端结构域与 SMC6 颈部结合,并将其桥接到 SMC5 头部。其次,Nse1 和 Nse3 KITE 蛋白与 Nse4 接头的结合增加了无 ATP 的 SMC5/6 复合物的稳定性。相比之下,ATP 结合到含有 KITE 亚基的 SMC5/6 显著降低了其稳定性。Nse4 接头的延长部分抑制了结合 ATP 的复合物的不稳定性,表明 KITE 蛋白与 Nse4 接头的结合限制了其有限的尺寸。我们的数据表明,KITE 蛋白可能会塑造 Nse4 接头,使其与无 ATP 的复合物最佳匹配,并在 ATP 结合时促进复合物的打开。这种机制表明 KITE 亚基在 SMC5/6 复合物的动力学中起着重要作用。