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Titlebook: RibosomesStructure, Function, and Dynamics; Marina V. Rodnina,Wolfgang Wintermeyer,Rachel Gree Book 2011 Springer-Verlag GmbH Wien 2011 ge

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Structural studies on decoding, termination and translocation in the bacterial ribosomestals of the subunit that diffracted to high resolution. However, other functional studies such as those on elongation and termination required new crystal forms of the 70S ribosome that also diffracted to high-resolution.
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Interaction of bacterial ribosomes with mRNA and tRNA as studied by X-ray crystallographic analysises of the ribosome. Over the last decade, X-ray structures of small (30S) and large (50S) subunits as well as of entire (70S) bacterial and archaeal ribosomes have vastly increased our understanding of the workings of this macromolecular machine.
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The packing of ribosomes in crystals and polysomesow that ribosome packing in crystals can be correlated with ribosome organization in active polysomes if ribosome dynamics are considered. The packing arrangement also suggests possible means for polysome regulation that may be used in bacteria.
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Ribosome crystallography: From early evolution to contemporary medical insightsndings about the overall nature of ribosome function. These studies showed that all ribosomes are composed of two unequal subunits. The small subunit in bacteria, denoted as 30S, contains an RNA chain (16S) of about 1500 nucleotides and 20–21 different proteins, whereas the large subunit, denoted as
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Structural studies on decoding, termination and translocation in the bacterial ribosometes of the ribosome with a view to helping elucidate the mechanisms underlying the various steps of translation. Some of these studies could be carried out using crystals of the ribosomal subunits, recognition of codon-anticodon pairing by the ribosome during decoding in the 30S subunit, or studies
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