Back to Search
Start Over
Cross-Chemistry Leads to Product Diversity from Atromentin Synthetases in Aspergilli from Section Nigri
- Source :
- Cell chemical biology. 26(2)
- Publication Year :
- 2018
-
Abstract
- Summary Non-ribosomal peptide synthetase (NRPS)-like enzymes catalyze the non-oxidative homodimerization of aromatic α-keto acids, but the exact reaction mechanism is unknown. The furanone-forming thioesterase domain of the Aspergillus terreus aspulvinone E synthetase MelA displays a predicted quinone-forming motif, whereby its catalytic triad contains an essential cysteine indicating an unusual thioester intermediate. To convert MelA into a quinone-forming atromentin synthetase its thioesterase domain was replaced with that from a Paxillus involutus or A. terreus atromentin synthetase. Phylogenetic proximity of donor and acceptor seems important, as only replacement with the A. terreus thioesterase was functional. Heterologous expression of atromentin synthetases in Aspergillus niger and Aspergillus oryzae revealed host-dependent product formation whereby cross-chemistry directed atromentin biosynthesis in A. niger toward atrofuranic acid. Screening of aspergilli from section Nigri identified an atromentin synthetase in Aspergillus brasiliensis that produced atrofuranic acid in the homologous host. Therefore, cross-chemistry on quinone cores appears common to section Nigri.
- Subjects :
- Aspergillus oryzae
Clinical Biochemistry
Biochemistry
aspulvinone E
Fungal Proteins
chemistry.chemical_compound
atromentin
Biosynthesis
Thioesterase
Phenols
Drug Discovery
Catalytic triad
Benzoquinones
Aspergillus terreus
Amino Acid Sequence
NRPS-like
Peptide Synthases
skin and connective tissue diseases
Molecular Biology
Phylogeny
Pharmacology
biology
Aspergillus niger
biology.organism_classification
Atromentin
Aspergillus
chemistry
Mutagenesis, Site-Directed
Molecular Medicine
Heterologous expression
thioesterase
Sequence Alignment
Subjects
Details
- ISSN :
- 24519448 and 24519456
- Volume :
- 26
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Cell chemical biology
- Accession number :
- edsair.doi.dedup.....32b98a860a65f00990a9b4aa5d946685