Characterization of an α-amino-ɛ-caprolactam racemase with broad substrate specificity from Citreicella sp. SE45

Author:

Payoungkiattikun Wisarut12,Okazaki Seiji23,Ina Atsutoshi23,H-Kittikun Aran1,Asano Yasuhisa23

Affiliation:

1. 0000 0004 0470 1162 grid.7130.5 Department of Industrial Biotechnology, Faculty of Agro-Industry Prince of Songkla University 90112 Hat-Yai Thailand

2. 0000 0001 0689 9676 grid.412803.c Department of Biotechnology and Biotechnology Research Center Toyama Prefectural University 5180 Kurokawa 939-0398 Imizu Toyama Japan

3. 0000 0004 1754 9200 grid.419082.6 Asano Active Enzyme Molecule Project, ERATO, JST 5180 Kurokawa 939-0398 Imizu Toyama Japan

Abstract

Abstract α-Amino-ε-caprolactam (ACL) racemizing activity was detected in a putative dialkylglycine decarboxylase (EC 4.1.1.64) from Citreicella sp. SE45. The encoding gene of the enzyme was cloned and transformed in Escherichia coli BL21 (DE3). The molecular mass of the enzyme was shown to be 47.4 kDa on SDS–polyacrylamide gel electrophoresis. The enzymatic properties including pH and thermal optimum and stabilities were determined. This enzyme acted on a broad range of amino acid amides, particularly unbranched amino acid amides including l-alanine amide and l-serine amide with a specific activity of 17.5 and 21.6 U/mg, respectively. The K  m and V  max values for d- and l-ACL were 5.3 and 2.17 mM, and 769 and 558 μmol/min.mg protein, respectively. Moreover, the turn over number (K  cat) and catalytic efficiency (K  cat/K  m) of purified ACL racemase from Citreicella sp. SE45 using l-ACL as a substrate were 465 S−1 and 214 S−1mM−1, respectively. The new ACL racemase from Citreicella sp. SE45 has a potential to be used as the biocatalytic application.

Funder

Royal Golden Jubilee Ph.D. Program

Japan Student Services Organization

Japan Society for the Promotion of Science

ERATO, JST

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

Reference41 articles.

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