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Updated: May 26, 2026

Single Particle Cryo-Electron Microscopy: From Sample to Structure
Published on: May 29, 2021
Detection of secondary and supersecondary structures of proteins from cryo-electron microscopy
Chandrajit Bajaj1, Samrat Goswami, Qin Zhang
1Center for Computational Visualization, The Institute for Computational Engineering and Sciences, Department of Computer Science, The University of Texas at Austin, University Station C0200, Austin, TX 78712, USA. bajaj@cs.utexas.edu
Abstract:
Recent advances in three-dimensional electron microscopy (3D EM) have enabled the quantitative visualization of the structural building blocks of proteins at improved resolutions. We provide algorithms to detect the secondary structures (α-helices and β-sheets) from proteins for which the volumetric maps are reconstructed at 6-10Å resolution. Additionally, we show that when the resolution is coarser than 10Å, some of the supersecondary structures can be detected from 3D EM maps. For both these algorithms, we employ tools from computational geometry and differential topology, specifically the computation of stable/unstable manifolds of certain critical points of the distance function induced by the molecular surface. Our results connect mathematically well-defined constructions with bio-chemically induced structures observed in proteins.
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