Marine Microorganisms for Biocatalysis: Selective Hydrolysis of Nitriles with a Salt-Resistant Strain of Meyerozyma guilliermondii

Mar Biotechnol (NY). 2019 Apr;21(2):229-239. doi: 10.1007/s10126-019-09875-0. Epub 2019 Jan 25.

Abstract

A screening among marine yeasts was carried out for nitrile hydrolyzing activity. Meyerozyma guilliermondii LM2 (UBOCC-A-214008) was able to efficiently grow on benzonitrile and cyclohexanecarbonitrile (CECN) as sole nitrogen sources. A two-step one-pot method for obtaining cells of M. guilliermondii LM2 (UBOCC-A-214008) endowed with high nitrilase activity was established; the resulting whole cells converted different nitriles with high molar conversions and showed interesting enantioselectivity toward racemic substrates. Nitrilase from M. guilliermondii LM2 (UBOCC-A-214008) displayed high activity on aromatic substrates, but also arylaliphatic and aliphatic substrates were accepted. Salt-resistant M. guilliermondii LM2 (UBOCC-A-214008) was used in media with different salinity, being highly active up to 1.5 M NaCl concentration. Finally, hydrolysis of nitriles was efficiently performed using a bioprocess (yeast growth and biotransformation with resting cells) entirely carried out in seawater.

Keywords: Biocatalysis; Marine yeast; Meyerozyma guilliermondii; Nitrilase; Seawater.

MeSH terms

  • Aminohydrolases
  • Biocatalysis*
  • Cyclohexanes / metabolism
  • Hydrolysis*
  • Nitriles / metabolism*
  • Saccharomycetales / enzymology
  • Saccharomycetales / growth & development
  • Saccharomycetales / metabolism*
  • Salinity
  • Seawater

Substances

  • Cyclohexanes
  • Nitriles
  • cyanocyclohexane
  • benzonitrile
  • Aminohydrolases
  • nitrilase