Summary information and primary citation
- PDB-id
-
1ob5;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- hydrolase
- Method
- X-ray (3.1 Å)
- Summary
- T. aquaticus elongation factor ef-tu complexed with the
antibiotic enacyloxin iia, a gtp analog, and phe-trna
- Reference
-
Parmeggiani A, Krab IM, Watanabe T, Nielsen RC, Dahlberg
C, Nyborg J, Nissen P (2006): "Enacyloxin
Iia Pinpoints a Binding Pocket of Elongation Factor TU
for Development of Novel Antibiotics."
J.Biol.Chem., 281, 2893. doi:
10.1074/JBC.M505951200.
- Abstract
- Elongation factor (EF-) Tu.GTP is the carrier of
aminoacyl-tRNA to the programmed ribosome. Enacyloxin IIa
inhibits bacterial protein synthesis by hindering the
release of EF-Tu.GDP from the ribosome. The crystal
structure of the Escherichia coli EF-Tu.guanylyl
iminodiphosphate (GDPNP).enacyloxin IIa complex at 2.3 A
resolution presented here reveals the location of the
antibiotic at the interface of domains 1 and 3. The binding
site overlaps that of kirromycin, an antibiotic with a
structure that is unrelated to enacyloxin IIa but that also
inhibits EF-Tu.GDP release. As one of the major
differences, the enacyloxin IIa tail borders a hydrophobic
pocket that is occupied by the longer tail of kirromycin,
explaining the higher binding affinity of the latter.
EF-Tu.GDPNP.enacyloxin IIa shows a disordered effector
region that in the Phe-tRNAPhe.EF-Tu (Thermus
aquaticus).GDPNP.enacyloxin IIa complex, solved at 3.1 A
resolution, is stabilized by the interaction with tRNA.
This work clarifies the structural background of the action
of enacyloxin IIa and compares its properties with those of
kirromycin, opening new perspectives for structure-guided
design of novel antibiotics.