Literature DB >> 29072349

Functional characterization of O-methyltransferases used to catalyse site-specific methylation in the post-tailoring steps of pradimicin biosynthesis.

J W Han1,2, B G Ng1, J K Sohng3, Y J Yoon4, G J Choi2, B S Kim1,5.   

Abstract

AIMS: To identify the roles of the two O-methyltransferase homologous genes pdmF and pdmT in the pradimicin biosynthetic gene cluster of Actinomadura hibisca P157-2. METHODS AND
RESULTS: Pradimicins are pentangular polyphenol antibiotics synthesized by bacterial type II polyketide synthases (PKSs) and tailoring enzymes. Pradimicins are naturally derivatized by combinatorial O-methylation at two positions (i.e., 7-OH and 11-OH) of the benzo[α]naphthacenequinone structure. PdmF and PdmT null mutants (PFKO and PTKO) were generated. PFKO produced the 11-O-demethyl shunt metabolites 11-O-demethylpradimicinone II (1), 11-O-demethyl-7-methoxypradimicinone II (2), 11-O-demethylpradimicinone I (3) and 11-O-demethylpradimicin A (4), while PTKO generated the 7-O-demethyl derivatives pradimicinone II (5) and 7-hydroxypradimicin A (6). Pradimicinones 1, 2, 3, and 5 were fed to a heterologous host Escherichia coli harbouring expression plasmid pET-22b::pdmF or pET-28a::pdmT. PdmF catalysed 11-O-methylation of pradimicinones 1, 2, and 3 regardless of O-methylation at the C-7 position, while PdmT was unable to catalyse 7-O-methylation when the C-11 hydroxyl group was methylated (5).
CONCLUSIONS: PdmF and PdmT were involved in 11-O- and 7-O-methylations of the benzo[α]naphthacenequinone moiety of pradimicin, respectively. Methylation of the C-7 hydroxyl group precedes methylation of the C-11 hydroxyl group in pradimicin biosynthesis. SIGNIFICANCE AND IMPACT OF THE STUDY: This is the first reported demonstration of the functions of PdmF and PdmT for regiospecific O-methylation, which contributes to better understanding of the post-PKS modifications in pradimicin biosynthesis as well as to rational engineering of the pradimicin biosynthetic machinery.
© 2017 The Society for Applied Microbiology.

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Keywords:  O-methyltransferase; aromatic polyketide; methyltransferase; polyketide; pradimicin; pradimicin biosynthesis; pradimicinone

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Year:  2017        PMID: 29072349     DOI: 10.1111/jam.13619

Source DB:  PubMed          Journal:  J Appl Microbiol        ISSN: 1364-5072            Impact factor:   3.772


  1 in total

1.  In vivo production of pederin by labrenzin pathway expansion.

Authors:  Dina Kačar; Carmen Schleissner; Librada M Cañedo; Pilar Rodríguez; Fernando de la Calle; Carmen Cuevas; Beatriz Galán; José Luis García
Journal:  Metab Eng Commun       Date:  2022-04-25
  1 in total

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