Materials and Structural Analysis Division, Thermo Fisher Scientific, Eindhoven, Netherlands.
Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons (ER-C-3): Structural Biology, Jülich, Germany.
Nat Methods. 2022 Sep;19(9):1126-1136. doi: 10.1038/s41592-022-01586-0. Epub 2022 Sep 5.
In electron cryomicroscopy (cryo-EM), molecular images of vitrified biological samples are obtained by conventional transmission microscopy (CTEM) using large underfocuses and subsequently computationally combined into a high-resolution three-dimensional structure. Here, we apply scanning transmission electron microscopy (STEM) using the integrated differential phase contrast mode also known as iDPC-STEM to two cryo-EM test specimens, keyhole limpet hemocyanin (KLH) and tobacco mosaic virus (TMV). The micrographs show complete contrast transfer to high resolution and enable the cryo-EM structure determination for KLH at 6.5 Å resolution, as well as for TMV at 3.5 Å resolution using single-particle reconstruction methods, which share identical features with maps obtained by CTEM of a previously acquired same-sized TMV data set. These data show that STEM imaging in general, and in particular the iDPC-STEM approach, can be applied to vitrified single-particle specimens to determine near-atomic resolution cryo-EM structures of biological macromolecules.
在电子低温显微镜(cryo-EM)中,通过传统的透射显微镜(CTEM)使用大的欠焦量获得玻璃化生物样品的分子图像,然后通过计算将其组合成高分辨率的三维结构。在这里,我们应用扫描透射电子显微镜(STEM),使用集成的微分相位对比模式(也称为 iDPC-STEM),对两个 cryo-EM 测试样本进行了研究,分别是贻贝血红蛋白(KLH)和烟草花叶病毒(TMV)。显微照片显示了完整的对比度传递到高分辨率,并且能够以 6.5 Å 的分辨率确定 KLH 的 cryo-EM 结构,以及使用单颗粒重建方法确定 TMV 的 3.5 Å 的分辨率,这些方法与使用之前获得的相同大小的 TMV 数据集的 CTEM 获得的图谱具有相同的特征。这些数据表明,STEM 成像通常,特别是 iDPC-STEM 方法,可以应用于玻璃化的单颗粒样本,以确定生物大分子的近原子分辨率 cryo-EM 结构。