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Updated: Aug 29, 2026

Preparation and Cryo-FIB micromachining of Saccharomyces cerevisiae for Cryo-Electron Tomography
Published on: November 20, 2021
Integrating in situ single-particle cryo-electron microscopy with cryo-electron tomography for high-resolution
Jian Yue1, Wangbiao Guo1, Jun Liu2
1Department of Microbial Pathogenesis, Yale School of Medicine, New Haven, CT 06516, USA; Microbial Sciences Institute, Yale University, West Haven, CT 06536, USA.
Abstract:
Single-particle cryo-electron microscopy (cryo-EM) has transformed structural biology by enabling atomic-resolution structure determination of purified macromolecular assemblies. Recent advances in in situ single-particle cryo-EM have extended this capability to near-atomic structural analysis directly within native cellular environments. However, major challenges remain because many cellular targets are low in abundance, structurally heterogeneous, and difficult to detect. In parallel, cryo-electron tomography (cryo-ET) combined with subtomogram averaging enables in situ visualization of macromolecular assemblies while preserving their three-dimensional cellular context, but limited throughput and resolution have constrained high-resolution analysis of rare or heterogeneous complexes. In this review, we discuss recent advances in sample preparation, data acquisition, image processing, and high-resolution refinement that improve the throughput, sensitivity, and resolution of in situ structural biology. We further highlight how integrating in situ single-particle cryo-EM with cryo-ET bridges cellular visualization and near-atomic structure determination, providing a scalable framework for investigating dynamic macromolecular assemblies directly in their native cellular context.
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