Penicillin G acylase from Achromobacter sp. CCM 4824 : an efficient biocatalyst for syntheses of beta-lactam antibiotics under conditions employed in large-scale processes
Language English Country Germany Media print-electronic
Document type Journal Article, Research Support, Non-U.S. Gov't
- MeSH
- Achromobacter enzymology MeSH
- Amoxicillin metabolism MeSH
- Ampicillin metabolism MeSH
- Anti-Bacterial Agents metabolism MeSH
- beta-Lactams metabolism MeSH
- Biotransformation MeSH
- Enzymes, Immobilized chemistry metabolism MeSH
- Hydrogen-Ion Concentration MeSH
- Penicillanic Acid analogs & derivatives metabolism MeSH
- Penicillin Amidase chemistry isolation & purification metabolism MeSH
- Enzyme Stability MeSH
- Temperature MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Names of Substances
- aminopenicillanic acid MeSH Browser
- Amoxicillin MeSH
- Ampicillin MeSH
- Anti-Bacterial Agents MeSH
- beta-Lactams MeSH
- Enzymes, Immobilized MeSH
- Penicillanic Acid MeSH
- Penicillin Amidase MeSH
Penicillin G acylase from Achromobacter sp. (NPGA) was studied in the enzymatic synthesis of β-lactam antibiotics by kinetically controlled N-acylation. When compared with penicillin acylase of Escherichia coli (PGA), the NPGA was significantly more efficient at syntheses of ampicillin and amoxicillin (higher S/H ratio and product accumulation) in the whole range of substrate concentrations. The degree of conversion of 6-aminopenicillanic acid to amoxicillin and ampicillin (160 mM 6-APA, 350 mM acyl donor methylester[Symbol: see text]HCl, pH 6.3, 25 °C, reaction time of 200 min) with immobilized NPGA equaled 96.9 % and 91.1 %, respectively. The enzyme was highly thermostable with maximum activity at 60 °C (pH 8.0) and 65 °C (pH 6.0). Activity half-life at 60 °C (pH 8.0) and at 60 °C (pH 6.0) was 24 min and 6.9 h, respectively. Immobilized NPGA exhibited long operational stability with half-life of about 2,000 cycles for synthesis of amoxicillin at conversion conditions used in large-scale processes (230 mM 6-APA, 340 mM D-4-hydroxyphenylglycine methylester[Symbol: see text]HCl, 27.5 °C, pH 6.25). We discuss our results with literature data available for related penicillin acylases in terms of their industrial potential.
Appl Microbiol Biotechnol. 2014 Dec;98(23):9889 PubMed
References provided by Crossref.org
Potential of Pichia pastoris for the production of industrial penicillin G acylase