Title : Engineered biosynthesis of novel polyenes: a pimaricin derivative produced by targeted gene disruption in Streptomyces natalensis - Mendes_2001_Chem.Biol_8_635 |
Author(s) : Mendes MV , Recio E , Fouces R , Luiten R , Martin JF , Aparicio JF |
Ref : Chemical Biology , 8 :635 , 2001 |
Abstract :
BACKGROUND: The post-polyketide synthase biosynthetic tailoring of polyene macrolides usually involves oxidations catalysed by cytochrome P450 monooxygenases (P450s). Although members from this class of enzymes are common in macrolide biosynthetic gene clusters, their specificities vary considerably toward the substrates utilised and the positions of the hydroxyl functions introduced. In addition, some of them may yield epoxide groups. Therefore, the identification of novel macrolide monooxygenases with activities toward alternative substrates, particularly epoxidases, is a fundamental aspect of the growing field of combinatorial biosynthesis. The specific alteration of these activities should constitute a further source of novel analogues. We investigated this possibility by directed inactivation of one of the P450s belonging to the biosynthetic gene cluster of an archetype polyene, pimaricin. |
PubMedSearch : Mendes_2001_Chem.Biol_8_635 |
PubMedID: 11451665 |
Mendes MV, Recio E, Fouces R, Luiten R, Martin JF, Aparicio JF (2001)
Engineered biosynthesis of novel polyenes: a pimaricin derivative produced by targeted gene disruption in Streptomyces natalensis
Chemical Biology
8 :635
Mendes MV, Recio E, Fouces R, Luiten R, Martin JF, Aparicio JF (2001)
Chemical Biology
8 :635