Balog Erika, Laberge Monique, Fidy Judit
Department of Biophysics and Radiation Biology and Research Group for Membrane Biology of the Hungarian Academy of Sciences, Faculty of Medicine, Semmelweis University, Budapest, Hungary.
Biophys J. 2007 Mar 1;92(5):1709-16. doi: 10.1529/biophysj.106.093195. Epub 2006 Dec 8.
A 3-ns molecular dynamics simulation in explicit solvent was performed to examine the inter- and intradomain motions of the two-domain enzyme yeast phosphoglycerate kinase without the presence of substrates. To elucidate contributions from individual domains, simulations were carried out on the complete enzyme as well as on each isolated domain. The enzyme is known to undergo a hinge-bending type of motion as it cycles from an open to a closed conformation to allow the phosphoryl transfer occur. Analysis of the correlation of atomic movements during the simulations confirms hinge bending in the nanosecond timescale: the two domains of the complete enzyme exhibit rigid body motions anticorrelated with respect to each other. The correlation of the intradomain motions of both domains converges, yielding a distinct correlation map in the enzyme. In the isolated domain simulations-in which interdomain interactions cannot occur-the correlation of domain motions no longer converges and shows a very small correlation during the same simulation time. This result points to the importance of interdomain contacts in the overall dynamics of the protein. The secondary structure elements responsible for interdomain contacts are also discussed.
在不存在底物的情况下,进行了3纳秒的显式溶剂分子动力学模拟,以研究双结构域酶酵母磷酸甘油酸激酶的结构域间和结构域内运动。为了阐明各个结构域的贡献,对完整的酶以及每个分离的结构域进行了模拟。已知该酶在从开放构象循环到闭合构象以允许磷酸转移发生时会经历铰链弯曲类型的运动。模拟过程中原子运动相关性的分析证实了在纳秒时间尺度上的铰链弯曲:完整酶的两个结构域表现出彼此反相关的刚体运动。两个结构域的结构域内运动的相关性收敛,在酶中产生了一个独特的相关图谱。在分离结构域模拟中(其中不会发生结构域间相互作用),结构域运动的相关性不再收敛,并且在相同的模拟时间内显示出非常小的相关性。该结果表明结构域间接触在蛋白质整体动力学中的重要性。还讨论了负责结构域间接触的二级结构元件。