4JYZ image
Deposition Date 2013-04-01
Release Date 2013-05-29
Last Version Date 2025-03-19
Entry Detail
PDB ID:
4JYZ
Keywords:
Title:
Crystal structure of E. coli glutaminyl-tRNA synthetase bound to ATP and native tRNA(Gln) containing the cmnm5s2U34 anticodon wobble base
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
2.50 Å
R-Value Free:
0.26
R-Value Work:
0.23
R-Value Observed:
0.23
Space Group:
C 2 2 21
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Glutamine--tRNA ligase
Gene (Uniprot):glnS
Chain IDs:A
Chain Length:553
Number of Molecules:1
Biological Source:Escherichia coli
Polymer Type:polyribonucleotide
Molecule:RNA (72-MER)
Chain IDs:B
Chain Length:75
Number of Molecules:1
Biological Source:Escherichia coli
Modified Residue
Compound ID Chain ID Parent Comp ID Details 2D Image
1RN B U ?
2MA B A 2-METHYLADENOSINE-5'-MONOPHOSPHATE
4SU B U 4-THIOURIDINE-5'-MONOPHOSPHATE
5MU B U 5-METHYLURIDINE 5'-MONOPHOSPHATE
H2U B U 5,6-DIHYDROURIDINE-5'-MONOPHOSPHATE
OMG B G O2'-METHYLGUANOSINE-5'-MONOPHOSPHATE
OMU B U O2'-METHYLURIDINE 5'-MONOPHOSPHATE
PSU B U PSEUDOURIDINE-5'-MONOPHOSPHATE
Primary Citation
Structural and Mechanistic Basis for Enhanced Translational Efficiency by 2-Thiouridine at the tRNA Anticodon Wobble Position.
J.Mol.Biol. 425 3888 3906 (2013)
PMID: 23727144 DOI: 10.1016/j.jmb.2013.05.018

Abstact

The 2-thiouridine (s(2)U) at the wobble position of certain bacterial and eukaryotic tRNAs enhances aminoacylation kinetics, assists proper codon-anticodon base pairing at the ribosome A-site, and prevents frameshifting during translation. By mass spectrometry of affinity-purified native Escherichia coli tRNA1(Gln)UUG, we show that the complete modification at the wobble position 34 is 5-carboxyaminomethyl-2-thiouridine (cmnm(5)s(2)U). The crystal structure of E. coli glutaminyl-tRNA synthetase (GlnRS) bound to native tRNA1(Gln) and ATP demonstrates that cmnm(5)s(2)U34 improves the order of a previously unobserved 11-amino-acid surface loop in the distal β-barrel domain of the enzyme and imparts other local rearrangements of nearby amino acids that create a binding pocket for the 2-thio moiety. Together with previously solved structures, these observations explain the degenerate recognition of C34 and modified U34 by GlnRS. Comparative pre-steady-state aminoacylation kinetics of native tRNA1(Gln), synthetic tRNA1(Gln) containing s(2)U34 as sole modification, and unmodified wild-type and mutant tRNA1(Gln) and tRNA2(Gln) transcripts demonstrates that the exocyclic sulfur moiety improves tRNA binding affinity to GlnRS 10-fold compared with the unmodified transcript and that an additional fourfold improvement arises from the presence of the cmnm(5) moiety. Measurements of Gln-tRNA(Gln) interactions at the ribosome A-site show that the s(2)U modification enhances binding affinity to the glutamine codons CAA and CAG and increases the rate of GTP hydrolysis by E. coli EF-Tu by fivefold.

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