Center for Theoretical Biological Physics, Rice University, Houston, TX 77005;
Center for Theoretical Biological Physics, Rice University, Houston, TX 77005.
Proc Natl Acad Sci U S A. 2018 Nov 20;115(47):11911-11916. doi: 10.1073/pnas.1812770115. Epub 2018 Nov 1.
Protein assemblies consisting of structural maintenance of chromosomes (SMC) and kleisin subunits are essential for the process of chromosome segregation across all domains of life. Prokaryotic condensin belonging to this class of protein complexes is composed of a homodimer of SMC that associates with a kleisin protein subunit called ScpA. While limited structural data exist for the proteins that comprise the (SMC)-kleisin complex, the complete structure of the entire complex remains unknown. Using an integrative approach combining both crystallographic data and coevolutionary information, we predict an atomic-scale structure of the whole condensin complex, which our results indicate being composed of a single ring. Coupling coevolutionary information with molecular-dynamics simulations, we study the interaction surfaces between the subunits and examine the plausibility of alternative stoichiometries of the complex. Our analysis also reveals several additional configurational states of the condensin hinge domain and the SMC-kleisin interaction domains, which are likely involved with the functional opening and closing of the condensin ring. This study provides the foundation for future investigations of the structure-function relationship of the various SMC-kleisin protein complexes at atomic resolution.
由结构维持染色体(SMC)和 kleisin 亚基组成的蛋白质组装体对于所有生命领域的染色体分离过程至关重要。属于此类蛋白质复合物的原核凝聚素由 SMC 的同源二聚体组成,与称为 ScpA 的 kleisin 蛋白亚基结合。虽然包含 SMC-kleisin 复合物的蛋白质的结构数据有限,但整个复合物的完整结构仍然未知。我们采用晶体学数据和共进化信息相结合的综合方法,预测了整个凝聚素复合物的原子尺度结构,结果表明该复合物由单个环组成。通过将共进化信息与分子动力学模拟相结合,我们研究了亚基之间的相互作用表面,并检查了复合物的替代化学计量的合理性。我们的分析还揭示了凝聚素铰链域和 SMC-kleisin 相互作用域的几个其他构象状态,这些状态可能与凝聚素环的功能开闭有关。这项研究为未来在原子分辨率下研究各种 SMC-kleisin 蛋白质复合物的结构-功能关系提供了基础。