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Updated: Jun 4, 2026

DNAzyme-dependent Analysis of rRNA 2’-O-Methylation
Published on: September 16, 2019
Cytosolic and ER-associated ribosomes share rRNA 2'-O-methylation landscapes across human cell types
1Biotech Research and Innovation Centre, Faculty of Health and Medical Sciences, University of Copenhagen, 2200 Copenhagen, Denmark ulku.uzun@bric.ku.dk anders.lund@bric.ku.dk.
Abstract:
Ribosome heterogeneity arising from variable rRNA 2'-O-methylation (2'-O-Me) has been proposed as a potential mechanism for translational specialization, but whether such heterogeneity contributes to compartment-specific translation remains unknown. Here, we systematically compare the 2'-O-Me landscapes of cytosolic and endoplasmic reticulum (ER)-associated ribosomes across three human cell types: HEK293 cells, H9-derived neural progenitor cells (NPCs), and neurons differentiated from these NPCs. Using detergent-based fractionation combined with RiboMeth-seq, we generate site-resolved rRNA methylation profiles for each compartment. Within each cell type, cytosolic and ER-associated ribosomes display highly similar 2'-O-Me patterns, with only modest compartment-specific differences observed at 18S:462 in NPCs and 28S:2043 in neurons. Across all samples, differences in 2'-O-Me patterns are more pronounced between cell types than between compartments. Together, these findings indicate that 2'-O-Me does not establish a broad ER-specific methylation signature, and is unlikely to be a major determinant of ribosome localization or function at the ER.
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