Novel strategy for expression of authentic and bioactive human basic fibroblast growth factor in Bacillus subtilis

Xiuhua Hu, Cheuk Yin Nelson Lai, T. Sivakumar, Hao Wang, K. L. Ng, C. C. Lam, W. K.R. Wong*

*Corresponding author for this work

Research output: Contribution to journalJournal Articlepeer-review

5 Citations (Scopus)

Abstract

Inteins, also known as “protein introns,” have been found to be present in many microbial species and widely employed for the expression and purification of recombinant proteins in Escherichia coli. However, interestingly, until now there has not been much information on the identification and application of inteins to protein expression in Bacillus subtilis. In this article, for the first time, despite the likelihood of absence of inteins in B. subtilis, this bacterium was shown to be able to facilitate auto-catalytic cleavages of fusions formed between inteins and recombinant proteins. Employing a construct expressing the intein, Ssp DnaB, (DnaB), which was fused at its N-terminus with the cellulose-binding domain (CellBD) of an endoglucanase encoded by the cenA gene of Cellulomonas fimi, the construct was demonstrated to be capable of mediating intracellular expression of basic fibroblast growth factor (bFGF), followed by auto-processing of the CellBD-DnaB-bFGF fusion to result in bFGF possessing the 146-residue authentic structure. The mentioned fusion was shown to result in a high yield of 84 mg l−1 of biologically active bFGF. Future work in improving the growth of B. subtilis may enable the use of this bacterium, working in cooperation with inteins, to result in a new platform for efficient expression of valuable proteins.

Original languageEnglish
Pages (from-to)7061-7069
Number of pages9
JournalApplied Microbiology and Biotechnology
Volume102
Issue number16
DOIs
Publication statusPublished - 1 Aug 2018

Bibliographical note

Publisher Copyright:
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature.

Keywords

  • Authentic structure
  • Bacillus subtilis
  • Cellulose-binding domain
  • Fed-batch fermentation
  • Human basic fibroblast growth factor
  • Inteins
  • Ssp DnaB
  • bFGF

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