BNLMS, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.
Phys Chem Chem Phys. 2020 Dec 16;22(47):27581-27589. doi: 10.1039/d0cp05030j.
Polo-like kinase 1 (PLK1) is a key regulator and coordinator for mitotic signaling that contains two major functional units of a kinase domain (KD) and a polo-box domain (PBD). While individual domain structures of the KD and the PBD are known, how they interact and assemble into a functional complex remains an open question. The structural model from the KD-PBD-Map205PBM heterotrimeric crystal structure of zebrafish PLK1 represents a major step in understanding the KD and the PBD interactions. However, how these two domains interact when connected by a linker in the full length PLK1 needs further investigation. By integrating different sources of structural data from small-angle X-ray scattering, hydroxyl radical protein footprinting, and computational sampling, here we report an overall architecture for PLK1 multidomain assembly between the KD and the PBD. Our model revealed that the KD uses its C-lobe to interact with the PBD via the site near the phosphopeptide binding site in its auto-inhibitory state in solution. Disruption of this auto-inhibition via site-directed mutagenesis at the KD-PBD interface increases its kinase activity, supporting the functional role of KD-PBD interactions predicted for regulating the PLK1 kinase function. Our results indicate that the full length human PLK1 takes dynamic structures with a variety of domain-domain interfaces in solution.
丝氨酸/苏氨酸激酶 1(PLK1)是有丝分裂信号的关键调节因子和协调因子,包含激酶结构域(KD)和 polo 盒结构域(PBD)两个主要功能单元。虽然 KD 和 PBD 的单个结构域结构是已知的,但它们如何相互作用并组装成功能复合物仍然是一个悬而未决的问题。来自斑马鱼 PLK1 的 KD-PBD-Map205PBM 异源三聚体晶体结构的结构模型代表了理解 KD 和 PBD 相互作用的重要一步。然而,当在全长 PLK1 中通过接头连接时,这两个结构域如何相互作用需要进一步研究。通过整合来自小角 X 射线散射、羟基自由基蛋白足迹和计算采样的不同结构数据源,我们在此报告了 KD 和 PBD 之间 PLK1 多结构域组装的整体结构。我们的模型表明,KD 利用其 C 结构域通过其自动抑制状态中靠近磷酸肽结合位点的位点与 PBD 相互作用。通过在 KD-PBD 界面处进行定点突变破坏这种自动抑制作用会增加其激酶活性,支持预测 KD-PBD 相互作用在调节 PLK1 激酶功能中的功能作用。我们的结果表明,全长人 PLK1 在溶液中采用具有多种结构域-结构域界面的动态结构。