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锥形断层扫描II:一种研究薄切片中细胞器的方法。

Conical tomography II: A method for the study of cellular organelles in thin sections.

作者信息

Zampighi G A, Zampighi L, Fain N, Wright E M, Cantele F, Lanzavecchia S

机构信息

Department of Neurobiology, David Geffen School of Medicine, University California Los Angeles, USA.

出版信息

J Struct Biol. 2005 Sep;151(3):263-74. doi: 10.1016/j.jsb.2005.05.008.

Abstract

We have used conical electron tomography in order to reconstruct neuronal organelles in thin sections of plastic embedded rat somato-sensory cortical tissue. The conical tilt series were collected at a 55 degrees tilt and at 5 degrees rotations, aligned using gold particles as fiduciary markers, and reconstructed using the weighted back projection algorithm. After a refinement process based on projection matching, the 3D maps showed the "unit membrane pattern" along the entire reconstructed volume. This pattern is indicative of the bilayer arrangement of phospholipids in biological membranes. Based on Fourier correlation methods as well as the visualization of the "unit membrane" pattern, we estimated resolutions of approximately 4 nm. To illustrate the prospective advantages of conical tomography, we segmented "coated" vesicles in the reconstructed volumes. These vesicles were comprised of a central core enclosing a small lumen, and a protein "coating" extending into the cytoplasm. The "coated" vesicle was attached to the plasma membrane through a complex structure shaped as an arch where the ends are attached to the membrane and the crook is connected to the vesicle. We concluded that conical electron tomography of thin-sectioned specimens provides a powerful experimental approach for studying thin-sectioned neuronal organelles at resolution levels of approximately 4 nm.

摘要

我们使用锥形电子断层扫描技术,以重建塑料包埋的大鼠躯体感觉皮层组织薄切片中的神经元细胞器。锥形倾斜序列在55度倾斜和5度旋转下采集,使用金颗粒作为基准标记进行对齐,并使用加权反投影算法进行重建。经过基于投影匹配的细化过程后,三维图谱在整个重建体积中显示出“单位膜模式”。这种模式表明生物膜中磷脂的双层排列。基于傅里叶相关方法以及“单位膜”模式的可视化,我们估计分辨率约为4纳米。为了说明锥形断层扫描的潜在优势,我们在重建体积中分割出“被膜”小泡。这些小泡由包围小腔的中央核心和延伸到细胞质中的蛋白质“被膜”组成。“被膜”小泡通过一个形状为拱形的复杂结构附着在质膜上,其两端附着在膜上,弯曲部分连接到小泡上。我们得出结论,薄切片标本的锥形电子断层扫描为研究分辨率约为4纳米的薄切片神经元细胞器提供了一种强大的实验方法。

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