Zheng Shawn Q, Kollman Justin M, Braunfeld Michael B, Sedat John W, Agard David A
The Howard Hughes Medical Institute, University of California, San Francisco, CA 94158-2517, USA.
J Struct Biol. 2007 Jan;157(1):148-55. doi: 10.1016/j.jsb.2006.10.026. Epub 2006 Nov 3.
Single particle reconstruction using the random conical tilt data collection geometry is a robust method for the initial determination of macromolecular structures by electron microscopy. Unfortunately, the broad adoption of this powerful approach has been limited by the practical challenges inherent in manual data collection of the required pairs of matching high and low tilt images (typically 60 degrees and 0 degrees). The microscopist is obliged to keep the imaging area centered during tilting as well as to maintain accurate focus in the tilted image while minimizing the overall electron dose, a challenging and time consuming process. To help solve these problems, we have developed an automated system for the rapid acquisition of accurately aligned and focused tilt pairs. The system has been designed to minimize the dose incurred during alignment and focusing, making it useful in both negative stain and cryo-electron microscopy. The system includes a feature for montaging untilted images to ensure that all of the particles in the tilted image may be used in the reconstruction.
使用随机锥形倾斜数据采集几何结构进行单颗粒重建是一种通过电子显微镜初步确定大分子结构的稳健方法。不幸的是,这种强大方法的广泛应用受到了手动采集所需的一对匹配的高倾斜和低倾斜图像(通常为60度和0度)所固有的实际挑战的限制。显微镜操作人员必须在倾斜过程中保持成像区域居中,同时在倾斜图像中保持精确聚焦,同时将总体电子剂量降至最低,这是一个具有挑战性且耗时的过程。为了帮助解决这些问题,我们开发了一种自动系统,用于快速采集精确对齐和聚焦的倾斜图像对。该系统旨在将对齐和聚焦过程中产生的剂量降至最低,使其在负染色和冷冻电子显微镜中都很有用。该系统包括一个拼接未倾斜图像的功能,以确保倾斜图像中的所有颗粒都可用于重建。