High yield expression in Pichia pastoris of human neutrophil elastase fused to cytochrome B5

Smith, Eliot T., Kruppa, Michael, Johnson, David A., , , , , & (2023) High yield expression in Pichia pastoris of human neutrophil elastase fused to cytochrome B5. Protein Expression and Purification, 206, Article number: 106255.

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Description

Recombinant human neutrophil elastase (rHNE), a serine protease, was expressed in Pichia pastoris. Glycosylation sites were removed via bioengineering to prevent hyper-glycosylation (a common problem with this system) and the cDNA was codon optimized for translation in Pichia pastoris. The zymogen form of rHNE was secreted as a fusion protein with an N-terminal six histidine tag followed by the heme binding domain of Cytochrome B5 (CytB5) linked to the N-terminus of the rHNE sequence via an enteropeptidase cleavage site. The CytB5 fusion balanced the very basic rHNE (pI = 9.89) to give a colored fusion protein (pI = 6.87), purified via IMAC. Active rHNE was obtained via enteropeptidase cleavage, and purified via cation exchange chromatography, resulting in a single protein band on SDS PAGE (Mr = 25 KDa). Peptide mass fingerprinting analysis confirmed the rHNE amino acid sequence, the absence of glycosylation and the absence of an 8 amino acid C-terminal peptide as opposed to the 20 amino acids usually missing from the C-terminus of native enzyme. The yield of active rHNE was 0.41 mg/L of baffled shaker flask culture medium. Active site titration with alpha-1 antitrypsin, a potent irreversible elastase inhibitor, quantified the concentration of purified active enzyme. The Km of rHNE with methoxy-succinyl-AAPVpNA was identical with that of the native enzyme within the assay's limit of accuracy. This is the first report of full-length rHNE expression at high yields and low cost facilitating further studies on this major human neutrophil enzyme.

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ID Code: 248085
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Harris, Jonathan M.orcid.org/0000-0003-4209-2380
Measurements or Duration: 8 pages
Keywords: Cytochrome B5, Elastase, Enzyme kinetics, Fermentation, Human, Neutrophil, Pichia pastoris, Serine protease
DOI: 10.1016/j.pep.2023.106255
ISSN: 1046-5928
Pure ID: 167123596
Divisions: Current > QUT Faculties and Divisions > Faculty of Health
Current > Schools > School of Biomedical Sciences
Funding Information: Supported by NHLB of USA NIH grant R15HL091770 to DAJ.
Copyright Owner: 2023 Elsevier Inc.
Copyright Statement: This work is covered by copyright. Unless the document is being made available under a Creative Commons Licence, you must assume that re-use is limited to personal use and that permission from the copyright owner must be obtained for all other uses. If the document is available under a Creative Commons License (or other specified license) then refer to the Licence for details of permitted re-use. It is a condition of access that users recognise and abide by the legal requirements associated with these rights. If you believe that this work infringes copyright please provide details by email to qut.copyright@qut.edu.au
Deposited On: 17 Apr 2024 02:26
Last Modified: 08 May 2024 21:54