4.7 Article

Exceptional thermal stability and organic solvent tolerance of an esterase expressed from a thermophilic host

Journal

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume 93, Issue 5, Pages 1965-1974

Publisher

SPRINGER
DOI: 10.1007/s00253-011-3504-z

Keywords

Protein stability; Recombinant protein; Esterase; E. coli; Sulfolobus islandicus

Funding

  1. State Key Laboratory of Agricultural Microbiology
  2. Huazhong Agricultural University
  3. Danish Free Research Council/FTP, Denmark [09-062932]
  4. Science and Technology Department of Hubei Provincial Government, China

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A protein expression system recently developed for the thermophilic crenarchaeon Sulfolobus islandicus was employed to produce recombinant protein for EstA, a thermophilic esterase encoded in the same organism. Large amounts of protein were readily obtained by an affinity protein purification, giving SisEstA. Upon Escherichia coli expression, only the thioredoxin-tagged EstA recombinant protein was soluble. The fusion protein was then purified, and removing the protein tag yielded EcSisEstA. Both forms of the thermophilic EstA enzyme were characterized. We found that SisEstA formed dimer exclusively in solution, whereas EcSisEstA appeared solely as monomer. The former exhibited a stronger resistance to organic solvents than the latter in general, having a much higher temperature optimum (90A degrees C vs. 65A degrees C). More strikingly, SisEstA exhibited a half-life that was more than 32-fold longer than that of EcSisEstA at 90A degrees C. This indicated that thermophilic enzymes yielded from homologous expression should be better biocatalysts than those obtained from mesophilic expression.

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