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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Electron holography of non-stained bacterial surface layer proteins
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Electron holography of non-stained bacterial surface layer proteins

机译:未染色细菌表面层蛋白的电子全息照相

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摘要

We report transmission electron microscopy (TEM) investigations on bacterial surface layers (S-layers) which belong to the simplest biomembranes existing in nature. S-layers are regular 2D protein crystals composed of single protein or glycoprotein species. In their native form, S-layers are weak phase objects giving only poor contrast in conventional TEM. Therefore, they are usually examined negatively stained. However, staining with heavy metal compounds may cause the formation of structural artefacts. In this work, electron microscopy studies of non-stained S-layers of Bacillus sphaericus NCTC 9602 were performed. Compared to other proteins, these S-layers are found relatively stable against radiation damage. Electron holography was applied where information about phase and amplitude of the diffracted electron wave is simultaneously obtained. In spite of small phase shifts observed, the phase image reconstructed from the hologram of the non-stained S-layer is found to be sensitive to rather slight structure and thickness variations. The lateral resolution, obtained so far, is less than that of conventional electron microscopy of negatively stained S-layers. It corresponds to the main lattice planes of 12.4 nm observed in the reconstructed electron phase image. In addition, as a unique feature of electron holography the phase image provides thickness information. Thus, the existence of double layers of the protein crystals could be easily visualized by the height profile of the specimen.
机译:我们报告细菌表面层(S层)属于自然界中存在的最简单的生物膜的透射电子显微镜(TEM)研究。 S层是由单个蛋白质或糖蛋白组成的规则2D蛋白质晶体。以其天然形式,S层是弱相对象,在常规TEM中仅产生差的对比度。因此,通常对它们进行负染色检查。但是,重金属化合物染色可能会导致结构伪影的形成。在这项工作中,对球形芽孢杆菌NCTC 9602的未染色S层进行了电子显微镜研究。与其他蛋白质相比,这些S层对辐射损伤相对稳定。应用电子全息术,同时获得有关衍射电子波的相位和幅度的信息。尽管观察到很小的相移,但发现从未染色的S层全息图重建的相位图像对相当小的结构和厚度变化敏感。迄今为止获得的横向分辨率小于负染色的S层的常规电子显微镜的横向分辨率。它对应于在重建的电子相位图像中观察到的12.4 nm的主晶格平面。另外,作为电子全息术的独特特征,相位图像提供了厚度信息。因此,通过样品的高度分布可以很容易地看到双层蛋白质晶体的存在。

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