bioRxiv · 10.1101/2024.11.29.625318
Evolutionary flexibility of ribosome biogenesis in bacteria
Abstract
Ribosomes are essential for protein synthesis and require ribosome biogenesis factors (RBFs) for assembly. To uncover the evolutionary diversity of ribosome biogenesis, we analyzed over 30,000 bacterial genomes and revealed that Candidate Phyla Radiation (CPR), also known as the phylum Patescibacteria, characterized by reduced genomes and smaller ribosomes, has about half the average number of RBFs compared with non-CPR bacteria. Notably, key RBFs such as der, obgE, and rbfA, considered indispensable, are conserved in only around 20%-70% of CPR genomes. Since such repertoires were not observed in reduced genomes of other phyla, CPR presumably diverged early in bacterial evolution. We further confirmed that ribosomal structural changes correlate with reduced RBFs, evidencing co-evolution between RBFs and the ribosome. These findings suggest that ribosomal biogenesis is more flexible than recognized, and the small cell and genome sizes of CPR bacteria and their early divergence may influence the unusual repertoires of RBFs. TeaserRibosome biogenesis in CPR bacteria was unexpectedly flexible, challenging traditional views of this essential process in evolution.
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Amikura, K., Ishii, S., Shimizu, Y., Suzuki, S.. 2024-11-30. Evolutionary flexibility of ribosome biogenesis in bacteria. https://doi.org/10.1101/2024.11.29.625318
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