Please use this identifier to cite or link to this item: https://doi.org/10.1186/s12864-019-5762-6
Title: Genomics-driven discovery of a biosynthetic gene cluster required for the synthesis of BII-Rafflesfungin from the fungus Phoma sp. F3723
Authors: Sinha, S.
Nge, C.-E.
Leong, C.Y.
Ng, V.
Crasta, S.
Alfatah, M.
Goh, F.
Low, K.-N.
Zhang, H.
Arumugam, P.
Lezhava, A.
Chen, S.L. 
Kanagasundaram, Y.
Ng, S.B.
Eisenhaber, F.
Eisenhaber, B.
Keywords: Adenylation domain
Biosynthetic gene cluster
Combined NRPS/PKS cluster
Condensation domain
Cyclic lipodepsipeptide
NonRibosomal Peptide Synthetase (NRPS)
Phoma species
Issue Date: 2019
Publisher: BioMed Central Ltd.
Citation: Sinha, S., Nge, C.-E., Leong, C.Y., Ng, V., Crasta, S., Alfatah, M., Goh, F., Low, K.-N., Zhang, H., Arumugam, P., Lezhava, A., Chen, S.L., Kanagasundaram, Y., Ng, S.B., Eisenhaber, F., Eisenhaber, B. (2019). Genomics-driven discovery of a biosynthetic gene cluster required for the synthesis of BII-Rafflesfungin from the fungus Phoma sp. F3723. BMC Genomics 20 (1) : 374. ScholarBank@NUS Repository. https://doi.org/10.1186/s12864-019-5762-6
Rights: Attribution 4.0 International
Abstract: Background: Phomafungin is a recently reported broad spectrum antifungal compound but its biosynthetic pathway is unknown. We combed publicly available Phoma genomes but failed to find any putative biosynthetic gene cluster that could account for its biosynthesis. Results: Therefore, we sequenced the genome of one of our Phoma strains (F3723) previously identified as having antifungal activity in a high-throughput screen. We found a biosynthetic gene cluster that was predicted to synthesize a cyclic lipodepsipeptide that differs in the amino acid composition compared to Phomafungin. Antifungal activity guided isolation yielded a new compound, BII-Rafflesfungin, the structure of which was determined. Conclusions: We describe the NRPS-t1PKS cluster 'BIIRfg' compatible with the synthesis of the cyclic lipodepsipeptide BII-Rafflesfungin [HMHDA-L-Ala-L-Glu-L-Asn-L-Ser-L-Ser-D-Ser-D-allo-Thr-Gly]. We report new Stachelhaus codes for Ala, Glu, Asn, Ser, Thr, and Gly. We propose a mechanism for BII-Rafflesfungin biosynthesis, which involves the formation of the lipid part by BIIRfg-PKS followed by activation and transfer of the lipid chain by a predicted AMP-ligase on to the first PCP domain of the BIIRfg-NRPS gene. © 2019 The Author(s).
Source Title: BMC Genomics
URI: https://scholarbank.nus.edu.sg/handle/10635/212305
ISSN: 14712164
DOI: 10.1186/s12864-019-5762-6
Rights: Attribution 4.0 International
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