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A rapid, simple, and economical method for the isolation of ribosomes and translational machinery for structural and functional studies

Nature Communications. 2025-08; 
Jessey Erath, Danielle Kemper, Elisha Mugo, Alex Jacoby, Elizabeth Valenzuela, Courtney F Jungers, Wandy L Beatty, Yaser Hashem, Marko Jovanovic, Sergej Djuranovic, Slavica Pavlovic Djuranovic Department of Cell Biology and Physiology, Washington University School of Medicine, Saint Louis
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CRISPR Cell Lines Cells were grown to 90% confluency and divided 1:4 (HEK-293, HeLa) or 1:3 (HDFs) for propagation. CRISPR/Cas9-engineered HEK-293 cell lines (uS-4-Flag, uS-13-Flag, and uL-4-HA tagged HEK-293 cells, Genscript) were treated as HEK T-RExTM-293 cells. Get A Quote

摘要

Ribosomes are RNA-protein complexes essential for protein synthesis and quality control. Traditional methods for ribosome isolation are labor-intensive, expensive, and require a substantial amount of biological material. In contrast, our method, RNA affinity purification using poly-lysine (RAPPL), provides a rapid, simple, and cost-effective alternative applicable to various species and types of starting material (cell lysates, whole cells, organs, or whole organisms). It is also compatible with traditional isolation techniques. Here, we describe the use of RAPPL for rapid isolation, functional screening, and structural analysis of ribosomes and associated factors. We also demonstrate the application of RAPPL i... More

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