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Enhancement of the production of L-glutaminase, an anticancer enzyme, from Aeromonas veronii by adaptive and induced mutation techniques

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  • S Aravinth Vijay Jesuraj
  • Md Moklesur Rahman Sarker
  • Long Chiau Ming
  • S Marylin Jeya Praya
  • M Ravikumar
  • Wong Tin Wui

Abstract

Microbial anti-cancer enzymes have been proven to be effective and economical agents for cancer treatment. Aeromonas veronii has been identified as a microorganism with the potential to produce L-glutaminase, an anticancer agent effective against acute lymphocytic leukaemia. In this study, a selective medium of Aeromonas veronii was used to culture the microorganism. Strain improvement was done by adaptive and induced mutational techniques. A selective minimal agar media was incorporated for the growth of the strain which further supports adaptive mutation. Strains were also UV-irradiated and successively treated with N-methyl-N'-nitro-N-nitrosoguanidine to find a resilient strain capable of producing L-glutaminase efficiently. The Plackett-Burman design and central composite designs were used to screen and optimize additional carbon and nitrogen sources. Adaptive mutation resulted in promising yield improvements compared to native strain (P

Suggested Citation

  • S Aravinth Vijay Jesuraj & Md Moklesur Rahman Sarker & Long Chiau Ming & S Marylin Jeya Praya & M Ravikumar & Wong Tin Wui, 2017. "Enhancement of the production of L-glutaminase, an anticancer enzyme, from Aeromonas veronii by adaptive and induced mutation techniques," PLOS ONE, Public Library of Science, vol. 12(8), pages 1-17, August.
  • Handle: RePEc:plo:pone00:0181745
    DOI: 10.1371/journal.pone.0181745
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