Expression and characterization of heparinase II with MBP tag from a novel strain, Raoultella NX-TZ-3-15

Arch Microbiol. 2022 Aug 11;204(9):551. doi: 10.1007/s00203-022-03158-4.

Abstract

The enzymes are biological macromolecules that biocatalyze certain biochemical reactions without undergoing any modification or degradation at the end of the reaction. In this work, we constructed a recombinant novel Raoultella sp. NX-TZ-3-15 strain that produces heparinase with a maltose binding tag to enhance its production and activity. Additionally, MBP-heparinase was purified and its enzymatic capabilities are investigated to determine its industrial application. Moreover, the recombinant plasmid encoding the MBP-heparinase fusion protein was effectively generated and purified to a high purity. According to SDS-PAGE analysis, the MBP-heparinase has a molecular weight of around 70 kDa and the majority of it being soluble with a maximum activity of 5386 U/L. It has also been noted that the three ions of Ca2 + , Co2 + , and Mg2 + can have an effect on heparinase activities, with Mg2 + being the most noticeable, increasing by about 85%, while Cu2 + , Fe2 + , Zn2 + having an inhibitory effect on heparinase activities. Further investigations on the mechanistic action, structural features, and genomes of Raoultella sp. NX-TZ-3-15 heparinase synthesis are required for industrial-scale manufacturing.

Keywords: Heparinase; MBP tag; Raoultella sp. NX-TZ-3-15; Ultra-low-weight heparin.

MeSH terms

  • Enterobacteriaceae / metabolism
  • Escherichia coli* / genetics
  • Escherichia coli* / metabolism
  • Heparin Lyase / chemistry
  • Heparin Lyase / genetics
  • Heparin Lyase / metabolism
  • Plasmids / genetics
  • Polysaccharide-Lyases* / genetics
  • Polysaccharide-Lyases* / metabolism

Substances

  • Polysaccharide-Lyases
  • heparinase II
  • Heparin Lyase