5mgp

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Structural basis for ArfA-RF2 mediated translation termination on stop-codon lacking mRNAs

Structural highlights

5mgp is a 10 chain structure with sequence from Escherichia coli. Full crystallographic information is available from OCA. For a guided tour on the structure components use FirstGlance.
Method:Electron Microscopy, Resolution 3.1Å
Experimental data:Check to display Experimental Data
Resources:FirstGlance, OCA, PDBe, RCSB, PDBsum, ProSAT

Function

RL2_ECOLI One of the primary rRNA binding proteins. Located near the base of the L1 stalk, it is probably also mobile. Required for association of the 30S and 50S subunits to form the 70S ribosome, for tRNA binding and peptide bond formation. It has been suggested to have peptidyltransferase activity; this is highly controversial.[HAMAP-Rule:MF_01320_B] In the E.coli 70S ribosome in the initiation state it has been modeled to make several contacts with the 16S rRNA (forming bridge B7b, PubMed:12809609); these contacts are broken in the model with bound EF-G.[HAMAP-Rule:MF_01320_B]

Publication Abstract from PubMed

In bacteria, ribosomes stalled on truncated mRNAs lacking a stop codon are rescued by either the transfer-messenger RNA (tmRNA), alternative rescue factor A (ArfA) or ArfB rescue systems1. While tmRNA- and ArfB-ribosome structures have been elucidated2-7, structural insight into how ArfA recognizes the presence of truncated mRNAs and recruits the canonical termination release factor RF2 to rescue the stalled ribosomes is lacking. Here we present a cryo-electron microscopy reconstruction of a ribosome stalled on a truncated mRNA in the presence of ArfA and RF2. The structure reveals that the C-terminus of ArfA binds within the mRNA entry channel on the small ribosomal subunit, explaining how ArfA distinguishes ribosomes bearing truncated versus full-length mRNAs. The N-terminal region of ArfA establishes multiple interactions with the decoding domain of RF2, illustrating how ArfA recruits RF2 to the stalled ribosome. Additionally, ArfA is observed to stabilize a unique conformation of the switch loop of RF2, which mimics the canonical translation termination state by directing the catalytically important GGQ motif within domain 3 of RF2 towards the peptidyl-transferase center (PTC) of the ribosome. Thus, our structure reveals not only how ArfA recruits RF2 to the ribosome but also how it promotes an active conformation of RF2 to enable translation termination in the absence of a stop codon.

Structural basis for ArfA-RF2-mediated translation termination on mRNAs lacking stop codons.,Huter P, Muller C, Beckert B, Arenz S, Berninghausen O, Beckmann R, Wilson DN Nature. 2016 Dec 1. doi: 10.1038/nature20821. PMID:27906161[1]

From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.

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See Also

References

  1. Huter P, Muller C, Beckert B, Arenz S, Berninghausen O, Beckmann R, Wilson DN. Structural basis for ArfA-RF2-mediated translation termination on mRNAs lacking stop codons. Nature. 2016 Dec 1. doi: 10.1038/nature20821. PMID:27906161 doi:http://dx.doi.org/10.1038/nature20821

Contents


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5mgp, resolution 3.10Å

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