9mq4

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Damaged 70S ribosome with PrfH bound

Structural highlights

9mq4 is a 11 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 2.78Å
Ligands:0TD, 1MG, 2MA, 2MG, 3TD, 4OC, 5MC, 5MU, 6MZ, G7M, MA6, MG, OMC, OMG, OMU, PSU, UR3, ZN
Resources:FirstGlance, OCA, PDBe, RCSB, PDBsum, ProSAT

Function

RL5_ECOLI This is 1 of the proteins that binds and probably mediates the attachment of the 5S RNA into the large ribosomal subunit, where it forms part of the central protuberance. Its 5S rRNA binding is significantly enhanced in the presence of L18.[HAMAP-Rule:MF_01333_B] In the 70S ribosome in the initiation state (PubMed:12809609) was modeled to contact protein S13 of the 30S subunit (bridge B1b), connecting the 2 subunits; the protein-protein contacts between S13 and L5 in B1b change in the model with bound EF-G implicating this bridge in subunit movement (PubMed:12809609 and PubMed:18723842). In the two 3.5 A resolved ribosome structures (PubMed:16272117) the contacts between L5, S13 and S19 are different, confirming the dynamic nature of this interaction.[HAMAP-Rule:MF_01333_B] Contacts the P site tRNA; the 5S rRNA and some of its associated proteins might help stabilize positioning of ribosome-bound tRNAs.[HAMAP-Rule:MF_01333_B]

Publication Abstract from PubMed

In bacteria, spontaneous mRNAs degradation and ribotoxin-induced RNA damage are two main biological events that lead to the stall of protein translation. The ubiquitous trans-translation system as well as several alternative rescue factors (Arfs) are responsible for rescuing the stalled ribosomes caused by truncated mRNAs that lack the stop codons. To date, protein release factor homolog (PrfH) is the only factor known to rescue the stalled ribosome damaged by ribotoxins. Here we show that a subfamily of PrfH, exemplified by PrfH from Capnocytophaga gingivalis (CgPrfH), rescues both types of stalled ribosomes described above. Our in vitro biochemical assays demonstrate that CgPrfH hydrolyzes the peptides attached to P-site tRNAs when in complex with both the damaged and intact ribosomes. Two cryo-EM structures of CgPrfH in complex with the damaged and intact 70S ribosomes revealed that CgPrfH employs two different regions of the protein to recognize two different stalled ribosomes to orient the GGQ motif for peptide hydrolysis. Thus, using a combination of bioinformatic, biochemical, and structural characterization described here, we have uncovered a family of ribosome rescue factors that possesses dual activities to resolve two distinct stalled protein translation in bacteria.

Molecular and structural basis of a subfamily of PrfH rescuing both the damaged and intact ribosomes stalled in translation.,Tian Y, Li Q, Fatma S, Jiang J, Jin H, Zeng F, Huang RH bioRxiv [Preprint]. 2025 Jan 9:2025.01.09.632186. doi: 10.1101/2025.01.09.632186. PMID:39829893[1]

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

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References

  1. Tian Y, Li Q, Fatma S, Jiang J, Jin H, Zeng F, Huang RH. Molecular and structural basis of a subfamily of PrfH rescuing both the damaged and intact ribosomes stalled in translation. bioRxiv [Preprint]. 2025 Jan 9:2025.01.09.632186. PMID:39829893 doi:10.1101/2025.01.09.632186

Contents


PDB ID 9mq4

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