Summary information and primary citation
- PDB-id
-
1xpr;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transcription-RNA
- Method
- X-ray (3.15 Å)
- Summary
- Structural mechanism of inhibition of the rho
transcription termination factor by the antibiotic
5a-formylbicyclomycin (fb)
- Reference
-
Skordalakes E, Brogan AP, Park BS, Kohn H, Berger JM
(2005): "Structural
mechanism of inhibition of the rho transcription
termination factor by the antibiotic bicyclomycin."
Structure, 13, 99-109. doi:
10.1016/j.str.2004.10.013.
- Abstract
- Rho is a hexameric RNA/DNA helicase/translocase that
terminates transcription of select genes in bacteria. The
naturally occurring antibiotic, bicyclomycin (BCM), acts as
a noncompetitive inhibitor of ATP turnover to disrupt this
process. We have determined three independent X-ray crystal
structures of Rho complexed with BCM and two semisynthetic
derivatives,
5a-(3-formylphenylsulfanyl)-dihydrobicyclomycin (FPDB) and
5a-formylbicyclomycin (FB) to 3.15, 3.05, and 3.15 A
resolution, respectively. The structures show that BCM and
its derivatives are nonnucleotide inhibitors that interact
with Rho at a pocket adjacent to the ATP and RNA binding
sites in the C-terminal half of the protein. BCM
association prevents ATP turnover by an unexpected
mechanism, occluding the binding of the nucleophilic water
molecule required for ATP hydrolysis. Our data explain why
only certain elements of BCM have been amenable to
modification and serve as a template for the design of new
inhibitors.