Proceedings of the National Academy of Sciences · 2014 · 222 citations · 38 references
Significance RibosomesRibosomal RnaGeneticsMolecular BiologyProtein SynthesisAtomic ResolutionPhylogeneticsProtein FoldingGene StructureBiophysicsProkaryotic SystemRna Structure PredictionDna ReplicationBioinformaticsStructural BiologyBiologyRibosomal Common CoreNatural SciencesProtein EvolutionSystems BiologyMedicine
Significance Ribosomes exist in every cell and are responsible for translation from mRNA to protein. The structure of the ribosomal common core is highly conserved in all living species, while the outer regions of the ribosome are variable. Ribosomal RNA of eukaryotes contains expansion segments accreted onto the surface of the core, which is nearly identical in structure to that in prokaryotic ribosomes. Comparing eukaryotic and prokaryotic ribosomes allows us to identify 3D insertion fingerprints of the expansion segments. Similar fingerprints allow us to analyze the common core and detect ancestral expansion segments within it. We construct a molecular model of ribosomal evolution starting from primordial biological systems near the dawn of life, culminating with relatively recent changes specific to metazoans.
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The PyMOL Molecular Graphics System
Warren L. DeLano · Medical Entomology and Zoology · 2002 · 18.1K citations
The Complete Atomic Structure of the Large Ribosomal Subunit at 2.4 Å Resolution
Nenad Ban, Poul Nissen, J.L. Hansen et al. · Science · 2000 · 3.3K citations
Structure of the 70 <i>S</i> Ribosome Complexed with mRNA and tRNA
M. Selmer, C.M. Dunham, F.V. Murphy et al. · Science · 2006 · 1.3K citations
Julian Gough, Kevin Karplus, Richard Hughey et al. · Journal of Molecular Biology · 2001 · 1.2K citations
Functional Genomics, Structural Bioinformatics, Natural Sciences +13