Crystal structure of a Pseudomonas malonate decarboxylase holoenzyme hetero-tetramer.

Publication Type:

Journal Article

Source:

Nat Commun, Volume 8, Issue 1, p.160 (2017)

Keywords:

Carboxy-Lyases, Gene Expression Regulation, Bacterial, Gene Expression Regulation, Enzymologic, Holoenzymes, Models, Molecular, Mutation, Protein Conformation, Pseudomonas aeruginosa

Abstract:

<p>Pseudomonas species and other aerobic bacteria have a biotin-independent malonate decarboxylase that is crucial for their utilization of malonate as the sole carbon and energy source. The malonate decarboxylase holoenzyme contains four subunits, having an acyl-carrier protein (MdcC subunit) with a distinct prosthetic group, as well as decarboxylase (MdcD-MdcE) and acyl-carrier protein transferase (MdcA) catalytic activities. Here we report the crystal structure of a Pseudomonas malonate decarboxylase hetero-tetramer, as well as biochemical and functional studies based on the structural information. We observe a malonate molecule in the active site of MdcA and we also determine the structure of malonate decarboxylase with CoA in the active site of MdcD-MdcE. Both structures provide molecular insights into malonate decarboxylase catalysis. Mutations in the hetero-tetramer interface can abolish holoenzyme formation. Mutations in the hetero-tetramer interface and the active sites can abolish Pseudomonas aeruginosa growth in a defined medium with malonate as the sole carbon source.Some aerobic bacteria contain a biotin-independent malonate decarboxylase (MDC), which allows them to use malonate as the sole carbon source. Here, the authors present the crystal structure of a Pseudomonas MDC and give insights into its catalytic mechanism and function.</p>

PDB: 
5VIP, 5VIT, and 5VJ1
Detector: 
PILATUS
Beamline: 
24-ID-C