Recycling of Aborted Ribosomal 50S Subunit-Nascent Chain-tRNA Complexes by the Heat Shock Protein Hsp15

When heat shock prematurely dissociates a translating bacterial ribosome, its 50S subunit is prevented from reinitiating protein synthesis by tRNA covalently linked to the unfinished protein chain that remains threaded through the exit tunnel. Hsp15, a highly upregulated bacterial heat shock protein...

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Veröffentlicht in:Journal of molecular biology 2009-03, Vol.386 (5), p.1357-1367
Hauptverfasser: Jiang, Linhua, Schaffitzel, Christiane, Bingel-Erlenmeyer, Rouven, Ban, Nenad, Korber, Philipp, Koning, Roman I., de Geus, Daniël C., Plaisier, Jasper R., Abrahams, Jan Pieter
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Sprache:eng
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Zusammenfassung:When heat shock prematurely dissociates a translating bacterial ribosome, its 50S subunit is prevented from reinitiating protein synthesis by tRNA covalently linked to the unfinished protein chain that remains threaded through the exit tunnel. Hsp15, a highly upregulated bacterial heat shock protein, reactivates such dead-end complexes. Here, we show with cryo-electron microscopy reconstructions and functional assays that Hsp15 translocates the tRNA moiety from the A site to the P site of stalled 50S subunits. By stabilizing the tRNA in the P site, Hsp15 indirectly frees up the A site, allowing a release factor to land there and cleave off the tRNA. Such a release factor must be stop codon independent, suggesting a possible role for a poorly characterized class of putative release factors that are upregulated by cellular stress, lack a codon recognition domain and are conserved in eukaryotes.
ISSN:0022-2836
1089-8638
DOI:10.1016/j.jmb.2008.10.079