H. Majerova, M. Benesik, J. Krouska, P. Sedlacek, P. Dvorak
Polyhydroxyalkanoates (PHAs) are microbial polyesters that represent a sustainable alternative to fossil fuel-based plastics. These biodegradable polymers have properties similar to conventional plastics and can be produced from waste materials. The key enzyme in PHA synthesis is PHA synthase (PhaC) and despite its importance, only a few PhaCs from extremophilic microorganisms have been characterised in detail. Here we characterised PHA synthase enzyme from the thermophilic bacterium Caldimonas thermodepolymerans DSM15344, an attractive candidate for PHA production from lignocellulosic residues due to its unique properties such as utilisation of xylose-rich substrates and high PHA yields on this pentose sugar. PhaC was successfully expressed in the surrogate host E. coli BL21 (DE3) GOLD, purified to homogeneity and its enzymatic activity was confirmed in vitro. The optimal pH range and temperature were determined as 6.3-6.9 and 50 {degrees}C, respectively. The melting temperature of PhaC was detected at 57.83 {+/-} 0.04 {degrees}C and the enzyme storage stability was assessed. The tertiary structure, including the enzyme active site, was predicted using available bioinformatic tools and the predicted catalytic residues were supported by site-directed mutagenesis. This study represents the first biochemical characterisation of PHA synthase from C. thermodepolymerans, expanding the limited set of characterised thermophilic PhaC enzymes.