Hinsen Konrad, Reuter Nathalie, Navaza Jorge, Stokes David L, Lacapère Jean-Jacques
Laboratoire Léon Brillouin (CEA-CNRS), 91191 Gif sur Yvette, France.
Biophys J. 2005 Feb;88(2):818-27. doi: 10.1529/biophysj.104.050716. Epub 2004 Nov 12.
A method for the flexible docking of high-resolution atomic structures into lower resolution densities derived from electron microscopy is presented. The atomic structure is deformed by an iterative process using combinations of normal modes to obtain the best fit of the electron microscopical density. The quality of the computed structures has been evaluated by several techniques borrowed from crystallography. Two atomic structures of the SERCA1 Ca-ATPase corresponding to different conformations were used as a starting point to fit the electron density corresponding to a different conformation. The fitted models have been compared to published models obtained by rigid domain docking, and their relation to the known crystallographic structures are explored by normal mode analysis. We find that only a few number of modes contribute significantly to the transition. The associated motions involve almost exclusively rotation and translation of the cytoplasmic domains as well as displacement of cytoplasmic loops. We suggest that the movements of the cytoplasmic domains are driven by the conformational change that occurs between nonphosphorylated and phosphorylated intermediate, the latter being mimicked by the presence of vanadate at the phosphorylation site in the electron microscopy structure.
本文提出了一种将高分辨率原子结构灵活对接至源自电子显微镜的低分辨率密度图中的方法。通过使用正常模式组合的迭代过程使原子结构变形,以获得与电子显微镜密度的最佳拟合。已采用从晶体学借用的几种技术对计算所得结构的质量进行了评估。使用对应于不同构象的SERCA1钙ATP酶的两个原子结构作为起点,来拟合对应于不同构象的电子密度。将拟合模型与通过刚性结构域对接获得的已发表模型进行了比较,并通过正常模式分析探索了它们与已知晶体学结构的关系。我们发现只有少数几种模式对转变有显著贡献。相关运动几乎完全涉及细胞质结构域的旋转和平移以及细胞质环的位移。我们认为,细胞质结构域的运动是由非磷酸化和磷酸化中间体之间发生的构象变化驱动的,后者在电子显微镜结构中的磷酸化位点处由钒酸盐的存在模拟。