How the MccB bacterial ancestor of ubiquitin E1 initiates biosynthesis of the microcin C7 antibiotic
- 4 June 2009
- journal article
- Published by Springer Nature in The EMBO Journal
- Vol. 28 (13) , 1953-1964
- https://doi.org/10.1038/emboj.2009.146
Abstract
The 39‐kDa Escherichia coli enzyme MccB catalyses a remarkable posttranslational modification of the MccA heptapeptide during the biosynthesis of microcin C7 (MccC7), a ‘Trojan horse’ antibiotic. The approximately 260‐residue C‐terminal region of MccB is homologous to ubiquitin‐like protein (UBL) activating enzyme (E1) adenylation domains. Accordingly, MccB‐catalysed C‐terminal MccA‐acyl‐adenylation is reminiscent of the E1‐catalysed activation reaction. However, unlike E1 substrates, which are UBLs with a C‐terminal di‐glycine sequence, MccB's substrate, MccA, is a short peptide with an essential C‐terminal Asn. Furthermore, after an intramolecular rearrangement of MccA‐acyl‐adenylate, MccB catalyses a second, unique reaction, producing a stable phosphoramidate‐linked analogue of acyl‐adenylated aspartic acid. We report six‐crystal structures of MccB in apo, substrate‐, intermediate‐, and inhibitor‐bound forms. Structural and kinetic analyses reveal a novel‐peptide clamping mechanism for MccB binding to heptapeptide substrates and a dynamic‐active site for catalysing dual adenosine triphosphate‐consuming reactions. The results provide insight into how a distinctive member of the E1 superfamily carries out two‐step activation for generating the peptidyl‐antibiotic MccC7.Keywords
This publication has 48 references indexed in Scilit:
- Origin and function of ubiquitin-like proteinsNature, 2009
- Structural Dissection of a Gating Mechanism Preventing Misactivation of Ubiquitin by NEDD8’s E1Biochemistry, 2008
- Structural Insights into E1-Catalyzed Ubiquitin Activation and Transfer to Conjugating EnzymesCell, 2008
- Phasercrystallographic softwareJournal of Applied Crystallography, 2007
- Basis for a ubiquitin-like protein thioester switch toggling E1–E2 affinityNature, 2007
- Structure of the Escherichia coli ThiS−ThiF Complex, a Key Component of the Sulfur Transfer System in Thiamin Biosynthesis,Biochemistry, 2005
- Structures of the SUMO E1 provide mechanistic insights into SUMO activation and E2 recruitment to E1The EMBO Journal, 2005
- Insights into the ubiquitin transfer cascade from the structure of the activating enzyme for NEDD8Nature, 2003
- [20] Processing of X-ray diffraction data collected in oscillation modePublished by Elsevier ,1997
- NMRPipe: A multidimensional spectral processing system based on UNIX pipesJournal of Biomolecular NMR, 1995