5NV8 image
Deposition Date 2017-05-03
Release Date 2017-10-04
Last Version Date 2024-05-08
Entry Detail
PDB ID:
5NV8
Keywords:
Title:
Structural basis for EarP-mediated arginine glycosylation of translation elongation factor EF-P
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
2.29 Å
R-Value Free:
0.33
R-Value Work:
0.28
R-Value Observed:
0.29
Space Group:
I 4
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:EF-P arginine 32 rhamnosyl-transferase
Gene (Uniprot):earP
Chain IDs:A
Chain Length:390
Number of Molecules:1
Biological Source:Pseudomonas putida KT2440
Ligand Molecules
Primary Citation
Structural Basis for EarP-Mediated Arginine Glycosylation of Translation Elongation Factor EF-P.
MBio 8 ? ? (2017)
PMID: 28951478 DOI: 10.1128/mBio.01412-17

Abstact

Glycosylation is a universal strategy to posttranslationally modify proteins. The recently discovered arginine rhamnosylation activates the polyproline-specific bacterial translation elongation factor EF-P. EF-P is rhamnosylated on arginine 32 by the glycosyltransferase EarP. However, the enzymatic mechanism remains elusive. In the present study, we solved the crystal structure of EarP from Pseudomonas putida The enzyme is composed of two opposing domains with Rossmann folds, thus constituting a B pattern-type glycosyltransferase (GT-B). While dTDP-β-l-rhamnose is located within a highly conserved pocket of the C-domain, EarP recognizes the KOW-like N-domain of EF-P. Based on our data, we propose a structural model for arginine glycosylation by EarP. As EarP is essential for pathogenicity in P. aeruginosa, our study provides the basis for targeted inhibitor design.IMPORTANCE The structural and biochemical characterization of the EF-P-specific rhamnosyltransferase EarP not only provides the first molecular insights into arginine glycosylation but also lays the basis for targeted-inhibitor design against Pseudomonas aeruginosa infection.

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