Improvement of thermostability of β-glucuronidase through rational design

Heng Tang, Shen Huang, Xudong Feng*, Chun Li

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

The rational design for enhancing protein thermostability has become a hot issue in ennzyme engineering. A three-dimensional structure was modeled by the SWISS-MODEL, which was very helpful for the rational design to engineer the recombinant β-glucuronidase from Penicillium purpurogenum Li-3 expressed in E. coli (PGUS-E). By using the design strategy of homologous sequence alignment and introducing proline mutation at appropriate sites, a simple site-directed mutagenesis protocol was developed to enhance thermostability of PGUS-E. Two mutant enzymes with higher thermostability were obtained: PGUS-E I130V and PGUS-E G280P. Then, these two sites were combined and mutant PGUS-E I130V+G280P was obtained. Further analysis of their thermostability at 60℃ and kinetics were performed. Compared to PGUS-E, thermostability of mutants was significantly improved, and the halftime (T1/2, 60℃) of mutants I130V, G280P and I130V+G280P increased by 3.5 times,5 times and 5.5 times, respectively, while Kcat/Km of mutant enzyme remained nearly unchanged. This study provided a successful case of rational design to improve protein thermostability.

Original languageEnglish
Pages (from-to)2205-2211
Number of pages7
JournalHuagong Xuebao/CIESC Journal
Volume66
Issue number6
DOIs
Publication statusPublished - 1 Jun 2015

Keywords

  • Homologous alignment
  • Kinetics
  • Molecular simulation
  • Proline
  • Protein stability
  • Rational design
  • β-glucuronidase

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