Abstract
The biosynthetic pathways for the fungal polyketides bikaverin and bostrycoidin, from Fusarium verticillioides and Fusarium solani respectively, were reconstructed and heterologously expressed in S. cerevisiae alongside seven different phosphopantetheinyl transferases (PPTases) from a variety of origins spanning bacterial, yeast and fungal origins. In order to gauge the efficiency of the interaction between the ACP-domains of the polyketide synthases (PKS) and PPTases, each were co-expressed individually and the resulting production of target polyketides were determined after 48 h of growth. In co-expression with both biosynthetic pathways, the PPTase from Fusarium verticillioides (FvPPT1) proved most efficient at producing both bikaverin and bostrycoidin, at 1.4 mg/L and 5.9 mg/L respectively. Furthermore, the remaining PPTases showed the ability to interact with both PKS's, except for a single PKS-PPTase combination. The results indicate that it is possible to boost the production of a target polyketide, simply by utilizing a more optimal PPTase partner, instead of the commonly used PPTases; NpgA, Gsp and Sfp, from Aspergillus nidulans, Brevibacillus brevis and Bacillus subtilis respectively.
Original language | English |
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Article number | 9 |
Journal | Microbial Cell Factories |
Volume | 21 |
Issue number | 1 |
ISSN | 1475-2859 |
DOIs | |
Publication status | Published - 10 Jan 2022 |
Bibliographical note
© 2022. The Author(s).Fingerprint
Dive into the research topics of 'Speed dating for enzymes! Finding the perfect phosphopantetheinyl transferase partner for your polyketide synthase'. Together they form a unique fingerprint.Datasets
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Speed dating for enzymes! Finding the perfect phosphopantetheinyl transferase partner for your polyketide synthase
Kristensen, S. B. (Creator), Søndergaard, T. (Creator), Muff, J. (Creator), Pedersen, T. B. (Creator), Gardiner, D. M. (Creator), Wimmer, R. (Creator), Sørensen, T. (Contributor), Petersen, C. (Creator), Spedtsberg, E. M. L. (Creator), Sørensen, J. L. (Contributor), Nielsen, M. R. (Creator) & Nielsen, K. L. (Creator), Figshare, 1 Jan 2022
DOI: 10.6084/m9.figshare.c.5786722.v1, https://springernature.figshare.com/collections/Speed_dating_for_enzymes_Finding_the_perfect_phosphopantetheinyl_transferase_partner_for_your_polyketide_synthase/5786722/1
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Additional file 1 of Speed dating for enzymes! Finding the perfect phosphopantetheinyl transferase partner for your polyketide synthase
Spedtsberg, E. M. L. (Creator), Petersen, C. (Creator), Nielsen, K. L. (Creator), Gardiner, D. M. (Creator), Wimmer, R. (Creator), Sørensen, J. L. (Contributor), Nielsen, M. R. (Creator), Kristensen, S. B. (Creator), Søndergaard, T. (Creator), Pedersen, T. B. (Creator), Sørensen, T. (Contributor) & Muff, J. (Creator), Figshare, 1 Jan 2022
DOI: 10.6084/m9.figshare.18132682.v1, https://springernature.figshare.com/articles/journal_contribution/Additional_file_1_of_Speed_dating_for_enzymes_Finding_the_perfect_phosphopantetheinyl_transferase_partner_for_your_polyketide_synthase/18132682/1
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