| Literature DB >> 26239156 |
Maureen B Quin1, Stephen N Michel1, Claudia Schmidt-Dannert2.
Abstract
Fungal 1,11 cyclizing sesquiterpene synthases are product specific under typical reaction conditions. However, in vivo expression of certain Δ(6)-protoilludene synthases results in dual 1,11 and 1,10 cyclization. To determine the factors regulating this mechanistic variation, in-depth in vitro characterization of Δ(6)-protoilludene synthases was conducted. Divalent metal ions determine cyclization specificity and this product variability. Promiscuity in metal binding is mediated by secondary metal-binding sites away from the conserved D(D/E)XX(D/E) motif in sesquiterpene synthases. Phylogenetic analysis revealed a divergent evolution of Basidiomycota trans-humulyl cation producing sesquiterpene synthases, results that indicate a wider diversity in function than previously predicted. This study provides key insights into the function and evolution of 1,11 cyclizing fungal sesquiterpene synthases.Entities:
Keywords: GC/MS; biosynthesis; kinetics; natural products
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Year: 2015 PMID: 26239156 PMCID: PMC4742524 DOI: 10.1002/cbic.201500308
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164