Lucić Vladan, Yang Ting, Schweikert Gabriele, Förster Friedrich, Baumeister Wolfgang
Max Planck Institute for Biochemistry, Martinsreid, Germany.
Structure. 2005 Mar;13(3):423-34. doi: 10.1016/j.str.2005.02.005.
We obtained tomograms of isolated mammalian excitatory synapses by cryo-electron tomography. This method allows the investigation of biological material in the frozen-hydrated state, without staining, and can therefore provide reliable structural information at the molecular level. We developed an automated procedure for the segmentation of molecular complexes present in the synaptic cleft based on thresholding and connectivity, and calculated several morphological characteristics of these complexes. Extensive lateral connections along the synaptic cleft are shown to form a highly connected structure with a complex topology. Our results are essentially parameter-free, i.e., they do not depend on the choice of certain parameter values (such as threshold). In addition, the results are not sensitive to noise; the same conclusions can be drawn from the analysis of both nondenoised and denoised tomograms.
我们通过冷冻电子断层扫描获得了分离的哺乳动物兴奋性突触的断层图像。这种方法能够在不染色的情况下研究处于冷冻水合状态的生物材料,因此可以在分子水平上提供可靠的结构信息。我们基于阈值和连通性开发了一种自动程序,用于分割突触间隙中存在的分子复合物,并计算了这些复合物的几个形态特征。沿突触间隙的广泛横向连接显示形成了具有复杂拓扑结构的高度连通结构。我们的结果基本上是无参数的,即它们不依赖于某些参数值(如阈值)的选择。此外,结果对噪声不敏感;对未去噪和去噪的断层图像进行分析均可得出相同的结论。