Department of Physics and Astronomy, University of California, Los Angeles, CA 90095, USA.
J Struct Biol. 2008 Nov;164(2):221-7. doi: 10.1016/j.jsb.2008.07.011. Epub 2008 Aug 15.
Electron tomography is currently the highest resolution imaging modality available to study the 3D structures of pleomorphic macromolecular assemblies, viruses, organelles and cells. Unfortunately, the resolution is currently limited to 3-5nm by several factors including the dose tolerance of biological specimens and the inaccessibility of certain tilt angles. Here we report the first experimental demonstration of equally-sloped tomography (EST) to alleviate these problems. As a proof of principle, we applied EST to reconstructing frozen-hydrated keyhole limpet hemocyanin molecules from a tilt-series taken with constant slope increments. In comparison with weighted back-projection (WBP), the algebraic reconstruction technique (ART) and the simultaneous algebraic reconstruction technique (SART), EST reconstructions exhibited higher contrast, less peripheral noise, more easily detectable molecular boundaries and reduced missing wedge effects. More importantly, EST reconstructions including only two-thirds the original images appeared to have the same resolution as full WBP reconstructions, suggesting that EST can either reduce the dose required to reach a given resolution or allow higher resolutions to be achieved with a given dose. EST was also applied to reconstructing a frozen-hydrated bacterial cell from a tilt-series taken with constant angular increments. The results confirmed similar benefits when standard tilts are utilized.
电子断层扫描是目前用于研究多形大分子组装体、病毒、细胞器和细胞的 3D 结构的最高分辨率成像方式。不幸的是,目前的分辨率受到几个因素的限制,包括生物样本的剂量耐受性和某些倾斜角度的不可及性。在这里,我们首次报告了同等倾斜断层扫描(EST)的实验验证,以缓解这些问题。作为原理验证,我们将 EST 应用于从以恒定斜率增量拍摄的倾斜系列中重建冷冻水合贻贝血红蛋白分子。与加权反向投影(WBP)、代数重建技术(ART)和同时代数重建技术(SART)相比,EST 重建显示出更高的对比度、更少的外围噪声、更容易检测到的分子边界和减少的缺失楔形效应。更重要的是,仅包含原始图像三分之二的 EST 重建似乎具有与完整 WBP 重建相同的分辨率,这表明 EST 可以降低达到给定分辨率所需的剂量,或者在给定剂量下实现更高的分辨率。EST 还应用于从以恒定角度增量拍摄的倾斜系列中重建冷冻水合细菌细胞。结果证实,当使用标准倾斜时,也有类似的好处。