Wang_2015_Nat.Commun_6_7674

Reference

Title : Identification of Alp1U and Lom6 as epoxy hydrolases and implications for kinamycin and lomaiviticin biosynthesis - Wang_2015_Nat.Commun_6_7674
Author(s) : Wang B , Guo F , Ren J , Ai G , Aigle B , Fan K , Yang K
Ref : Nat Commun , 6 :7674 , 2015
Abstract :

The naturally occurring diazobenzofluorenes, kinamycins, fluostatins and lomaiviticins, possess highly oxygenated A-rings, via which the last forms a dimeric pharmacophore. However, neither the A-ring transformation nor the dimerization mechanisms have been explored thus far. Here we propose a unified biosynthetic logic for the three types of antibiotics and verify one key reaction via detailed genetic and enzymatic experiments. Alp1U and Lom6 from the kinamycin and lomaiviticin biosynthesis, respectively, are shown to catalyse epoxy hydrolysis on a substrate that is obtained by chemical deacetylation of a kinamycin-pathway-derived intermediate. Thus, our study provides the first evidence for the existence of an epoxy intermediate in lomaiviticin biosynthesis. Furthermore, our results suggest that the dimerization in the lomaiviticin biosynthesis proceeds after dehydration of a product generated by Lom6.

PubMedSearch : Wang_2015_Nat.Commun_6_7674
PubMedID: 26134788
Gene_locus related to this paper: 9actn-h1q5r8 , stram-q1rqu8

Related information

Gene_locus 9actn-h1q5r8    stram-q1rqu8

Citations formats

Wang B, Guo F, Ren J, Ai G, Aigle B, Fan K, Yang K (2015)
Identification of Alp1U and Lom6 as epoxy hydrolases and implications for kinamycin and lomaiviticin biosynthesis
Nat Commun 6 :7674

Wang B, Guo F, Ren J, Ai G, Aigle B, Fan K, Yang K (2015)
Nat Commun 6 :7674