Department of Imaging Physic, Delft University of Technology, Delft, Netherlands.
Delmic B.V, Delft, Netherlands.
Elife. 2022 Oct 28;11:e82891. doi: 10.7554/eLife.82891.
Cryogenic electron tomography (cryo-ET) combined with subtomogram averaging, allows in situ visualization and structure determination of macromolecular complexes at subnanometre resolution. Cryogenic focused ion beam (cryo-FIB) micromachining is used to prepare a thin lamella-shaped sample out of a frozen-hydrated cell for cryo-ET imaging, but standard cryo-FIB fabrication is blind to the precise location of the structure or proteins of interest. Fluorescence-guided focused ion beam (FIB) milling at target locations requires multiple sample transfers prone to contamination, and relocation and registration accuracy is often insufficient for 3D targeting. Here, we present in situ fluorescence microscopy-guided FIB fabrication of a frozen-hydrated lamella to address this problem: we built a coincident three-beam cryogenic correlative microscope by retrofitting a compact cryogenic microcooler, custom positioning stage, and an inverted widefield fluorescence microscope (FM) on an existing FIB scanning electron microscope. We show FM controlled targeting at every milling step in the lamella fabrication process, validated with transmission electron microscope tomogram reconstructions of the target regions. The ability to check the lamella during and after the milling process results in a higher success rate in the fabrication process and will increase the throughput of fabrication for lamellae suitable for high-resolution imaging.
低温电子断层扫描(cryo-ET)与亚断层平均化相结合,可在原位可视化和亚纳米分辨率下确定大分子复合物的结构。低温聚焦离子束(cryo-FIB)微加工用于从冷冻水合细胞中制备出薄的薄片形样品,用于 cryo-ET 成像,但标准的 cryo-FIB 制造对感兴趣的结构或蛋白质的精确位置是盲目的。在目标位置进行荧光引导的聚焦离子束(FIB)铣削需要多次样品转移,容易受到污染,并且重新定位和注册精度通常不足以进行 3D 靶向。在这里,我们提出了原位荧光显微镜引导的冷冻水合薄片的 FIB 制造,以解决这个问题:我们通过对现有的 FIB 扫描电子显微镜进行改装,构建了一个符合三束的低温相关显微镜,包括紧凑的低温微冷却器、定制的定位台和倒置宽场荧光显微镜(FM)。我们展示了在薄片制造过程中的每一步都进行 FM 控制的靶向,通过对目标区域的透射电子显微镜断层重建进行验证。在铣削过程中和之后检查薄片的能力,可提高薄片制造过程的成功率,并提高适合高分辨率成像的薄片的制造产量。