| Literature DB >> 24677498 |
Takayoshi Saruwatari, Fumitoshi Yagishita, Takashi Mino, Hiroshi Noguchi, Kinya Hotta, Kenji Watanabe.
Abstract
As dimeric natural products frequently exhibit useful biological activities, identifying and understanding their mechanisms of dimerization is of great interest. One such compound is (−)-ditryptophenaline, isolated from Aspergillus flavus, which inhibits substance P receptor for potential analgesic and anti-inflammatory activity. Through targeted gene knockout in A. flavus and heterologous yeast gene expression, we determined for the first time the gene cluster and pathway for the biosynthesis of a dimeric diketopiperazine alkaloid. We also determined that a single cytochrome P450, DtpC, is responsible not only for pyrroloindole ring formation but also for concurrent dimerization of N-methylphenylalanyltryptophanyl diketopiperazine monomers into a homodimeric product. Furthermore, DtpC exhibits relaxed substrate specificity, allowing the formation of two new dimeric compounds from a non-native monomeric precursor, brevianamide F. A radical-mediated mechanism of dimerization is proposed.Entities:
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Year: 2014 PMID: 24677498 DOI: 10.1002/cbic.201300751
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164