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| [[Image:2rdo.jpg|left|200px]] | | {{Seed}} |
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| {{STRUCTURE_2rdo| PDB=2rdo | SCENE= }} | | {{STRUCTURE_2rdo| PDB=2rdo | SCENE= }} |
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| '''50S subunit with EF-G(GDPNP) and RRF bound'''
| | ===50S subunit with EF-G(GDPNP) and RRF bound=== |
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| ==Overview==
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| After termination of protein synthesis, the bacterial ribosome is split into its 30S and 50S subunits by the action of ribosome recycling factor (RRF) and elongation factor G (EF-G) in a guanosine 5'-triphosphate (GTP)-hydrolysis-dependent manner. Based on a previous cryo-electron microscopy study of ribosomal complexes, we have proposed that the binding of EF-G to an RRF-containing posttermination ribosome triggers an interdomain rotation of RRF, which destabilizes two strong intersubunit bridges (B2a and B3) and, ultimately, separates the two subunits. Here, we present a 9-A (Fourier shell correlation cutoff of 0.5) cryo-electron microscopy map of a 50S x EF-G x guanosine 5'-[(betagamma)-imido]triphosphate x RRF complex and a quasi-atomic model derived from it, showing the interaction between EF-G and RRF on the 50S subunit in the presence of the noncleavable GTP analogue guanosine 5'-[(betagamma)-imido]triphosphate. The detailed information in this model and a comparative analysis of EF-G structures in various nucleotide- and ribosome-bound states show how rotation of the RRF head domain may be triggered by various domains of EF-G. For validation of our structural model, all known mutations in EF-G and RRF that relate to ribosome recycling have been taken into account. More importantly, our results indicate a substantial conformational change in the Switch I region of EF-G, suggesting that a conformational signal transduction mechanism, similar to that employed in transfer RNA translocation on the ribosome by EF-G, translates a large-scale movement of EF-G's domain IV, induced by GTP hydrolysis, into the domain rotation of RRF that eventually splits the ribosome into subunits.
| | The line below this paragraph, {{ABSTRACT_PUBMED_17996252}}, adds the Publication Abstract to the page |
| | (as it appears on PubMed at http://www.pubmed.gov), where 17996252 is the PubMed ID number. |
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| | {{ABSTRACT_PUBMED_17996252}} |
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| ==About this Structure== | | ==About this Structure== |
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| [[Category: Trna-binding]] | | [[Category: Trna-binding]] |
| [[Category: Zinc]] | | [[Category: Zinc]] |
| ''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun May 4 16:41:56 2008'' | | |
| | ''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Tue Jul 29 07:37:08 2008'' |