Institute for Integrative Radiation and Nuclear Science, Kyoto University, Kumatori, Sennan-gun, Osaka, 590-0494, Japan.
Sci Rep. 2021 Mar 11;11(1):5655. doi: 10.1038/s41598-021-85219-0.
Multi-domain proteins (MDPs) show a variety of domain conformations under physiological conditions, regulating their functions through such conformational changes. One of the typical MDPs, ER-60 which is a protein folding enzyme, has a U-shape with four domains and is thought to have different domain conformations in solution depending on the redox state at the active centres of the edge domains. In this work, an aggregation-free small-angle X-ray scattering revealed that the structures of oxidized and reduced ER-60 in solution are different from each other and are also different from those in the crystal. Furthermore, structural modelling with coarse-grained molecular dynamics simulation indicated that the distance between the two edge domains of oxidized ER-60 is longer than that of reduced ER-60. In addition, one of the edge domains has a more flexible conformation than the other.
多结构域蛋白(MDPs)在生理条件下表现出多种结构域构象,通过这些构象变化来调节其功能。其中一种典型的 MDP 是 ER-60,它是一种蛋白折叠酶,具有 U 形结构和四个结构域,被认为在溶液中具有不同的结构域构象,具体取决于边缘结构域活性中心的氧化还原状态。在这项工作中,无聚集的小角 X 射线散射表明,溶液中氧化和还原 ER-60 的结构彼此不同,并且与晶体中的结构也不同。此外,使用粗粒分子动力学模拟进行的结构建模表明,氧化 ER-60 的两个边缘结构域之间的距离大于还原 ER-60 的距离。此外,其中一个边缘结构域具有比另一个更灵活的构象。