METHODS article
Front. Mol. Biosci.
Sec. Structural Biology
Purification of Ribosomes from Human Embryonic Stem (hES) Cells for High-Resolution Cryo-EM structural studies
Anat Bashan 1
Disha Gajanan Hiregange 1
Aliza Fedorenko 1
Elena Ainbinder 2
Ada E Yonath 1
1. Weizmann Institute of Science Department of Chemical and Structural Biology, Rehovot, Israel
2. Department of Life Science Core Facilities, Weizmann Institute of Science, Rehovot, Israel
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Abstract
Human ribosome structures at near-atomic resolution have been determined predominantly from transformed cell lines, often using translation inhibitors during purification that can introduce structural artifacts. We present a robust and scalable protocol for purifying 80S ribosomes from human embryonic stem (hES) cell cultures. The method addresses two common bottlenecks for structural studies of ribosomes from pluripotent cells: limited starting material and structural perturbations introduced by translation inhibitors such as cycloheximide or anisomycin. By combining gentle lysis and rapid clarification with a sucrose-cushion concentration step followed by gradient based purification the workflow preserves native ribosome conformations and yields highly pure 80S ribosomes suitable for single-particle cryo-EM at near-atomic resolution model building. The workflow was reproduced across independent preparations with consistent yields and map quality. As expected for inhibitor-free purification, no density corresponding to elongation inhibitors was observed in ribosomal functional centers. We supply a detailed, scalable protocol that includes buffer recipes, expected yields, quality control and troubleshooting steps, and recommendations for cryo-EM grid preparation. The procedure is transferable to other sensitive cell types (for example, primary B cells and iPS cells). This workflow expands access to native human ribosomes from non-transformed, developmentally relevant cells for structural and mechanistic studies of translation.
Summary
Keywords
cryo-EM, hESC, ribosome, SPA, Structure
Received
31 December 2025
Accepted
03 February 2026
Copyright
© 2026 Bashan, Hiregange, Fedorenko, Ainbinder and Yonath. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
*Correspondence: Ada E Yonath
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