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Simultaneous cell disruption and semi-quantitative activity assays for high-throughput screening of thermostable L-asparaginases.

Xu LiXian ZhangShuqin XuHengwei ZhangMeijuan XuTaowei YangLi WangHaifeng QianHuiling ZhangHaitian FangTolbert OsireZhiming RaoShang-Tian Yang
Published in: Scientific reports (2018)
L-asparaginase, which catalyses the hydrolysis of L-asparagine to L-aspartate, has attracted the attention of researchers due to its expanded applications in medicine and the food industry. In this study, a novel thermostable L-asparaginase from Pyrococcus yayanosii CH1 was cloned and over-expressed in Bacillus subtilis 168. To obtain thermostable L-asparaginase mutants with higher activity, a robust high-throughput screening process was developed specifically for thermophilic enzymes. In this process, cell disruption and enzyme activity assays are simultaneously performed in 96-deep well plates. By combining error-prone PCR and screening, six brilliant positive variants and four key amino acid residue mutations were identified. Combined mutation of the four residues showed relatively high specific activity (3108 U/mg) that was 2.1 times greater than that of the wild-type enzyme. Fermentation with the mutant strain in a 5-L fermenter yielded L-asparaginase activity of 2168 U/mL.
Keyphrases
  • wild type
  • amino acid
  • single cell
  • bacillus subtilis
  • cell therapy
  • high throughput
  • working memory
  • mass spectrometry
  • climate change
  • anaerobic digestion
  • ionic liquid
  • lactic acid