First evidence of a membrane-bound, tyramine and beta-phenylethylamine producing, tyrosine decarboxylase in Enterococcus faecalis: a two-dimensional electrophoresis proteomic study

Proteomics. 2009 May;9(10):2695-710. doi: 10.1002/pmic.200800780.

Abstract

The soluble and membrane proteome of a tyramine producing Enterococcus faecalis, isolated from an Italian goat cheese, was investigated. A detailed analysis revealed that this strain also produces small amounts of beta-phenylethylamine. Kinetics of tyramine and beta-phenylethylamine accumulation, evaluated in tyrosine plus phenylalanine-enriched cultures (stimulated condition), suggest that the same enzyme, the tyrosine decarboxylase (TDC), catalyzes both tyrosine and phenylalanine decarboxylation: tyrosine was recognized as the first substrate and completely converted into tyramine (100% yield) while phenylalanine was decarboxylated to beta-phenylethylamine (10% yield) only when tyrosine was completely depleted. The presence of an aspecific aromatic amino acid decarboxylase is a common feature in eukaryotes, but in bacteria only indirect evidences of a phenylalanine decarboxylating TDC have been presented so far. Comparative proteomic investigations, performed by 2-DE and MALDI-TOF/TOF MS, on bacteria grown in conditions stimulating tyramine and beta-phenylethylamine biosynthesis and in control conditions revealed 49 differentially expressed proteins. Except for aromatic amino acid biosynthetic enzymes, no significant down-regulation of the central metabolic pathways was observed in stimulated conditions, suggesting that tyrosine decarboxylation does not compete with the other energy-supplying routes. The most interesting finding is a membrane-bound TDC highly over-expressed during amine production. This is the first evidence of a true membrane-bound TDC, longly suspected in bacteria on the basis of the gene sequence.

MeSH terms

  • Biogenic Amines / metabolism
  • Cheese / microbiology
  • Data Interpretation, Statistical
  • Electrophoresis, Gel, Two-Dimensional*
  • Enterococcus faecalis / enzymology*
  • Enterococcus faecalis / genetics
  • Enterococcus faecalis / metabolism
  • Food Microbiology
  • Kinetics
  • Membrane Proteins / genetics
  • Membrane Proteins / metabolism
  • Phenethylamines / metabolism*
  • Proteomics
  • Tyramine / metabolism*
  • Tyrosine Decarboxylase / genetics
  • Tyrosine Decarboxylase / metabolism*

Substances

  • Biogenic Amines
  • Membrane Proteins
  • Phenethylamines
  • phenethylamine
  • Tyrosine Decarboxylase
  • Tyramine