QB3 Institute, University of California, Berkeley, CA 94720, USA.
J Struct Biol. 2011 Jun;174(3):468-75. doi: 10.1016/j.jsb.2011.03.020. Epub 2011 Apr 2.
The use of a Zernike-type phase plate in biologic cryo-electron microscopy allows the imaging, without using defocus, of what are predominantly phase objects. It is thought that such phase-plate implementations might result in higher quality images, free from the problems of CTF correction that occur when images must be recorded at extremely high values of defocus. In single-particle cryo-electron microscopy it is hoped that these improvements in image quality will facilitate work on structures that have proved difficult to study, either because of their relatively small size or because the structures are not completely homogeneous. There is still a need, however, to quantitate how much improvement can be gained by using a phase plate for single-particle cryo-electron microscopy. We present a method for quantitatively modeling the images recorded with 200keV electrons, for single particles embedded in vitreous ice. We then investigate what difference the use of a phase-plate device could have on the processing of single-particle data. We confirm that using a phase plate results in single-particle datasets in which smaller molecules can be detected, particles can be more accurately aligned and problems of heterogeneity can be more easily addressed.
在生物冷冻电子显微镜中使用泽尼克(Zernike)型相板可以在不使用离焦的情况下对主要为相位物体成像。人们认为,这种相板的应用可能会导致更高质量的图像,避免了当图像必须在极高离焦值下记录时出现的 CTF 校正问题。在单颗粒冷冻电子显微镜中,人们希望这些图像质量的改进将有助于研究那些由于相对较小的尺寸或结构不完全均匀而难以研究的结构。然而,仍然需要定量分析使用相板对单颗粒冷冻电子显微镜可以获得多少改进。我们提出了一种方法,用于对嵌入玻璃态冰中的单颗粒用 200keV 电子记录的图像进行定量建模。然后,我们研究了相板装置的使用可能对单颗粒数据处理产生的影响。我们证实,使用相板可以得到单颗粒数据集,其中可以检测到更小的分子,颗粒可以更准确地对齐,并且更容易解决异质性问题。