Title
In vitrocharacterization of 3-chloro-4-hydroxybenzoic acid building block formation in ambigol biosynthesis
Date Issued
14 March 2021
Access level
open access
Resource Type
journal article
Author(s)
Kresna I.D.M.
Milzarek T.
Duell E.R.
Mir Mohseni M.
Mettal U.
König G.M.
Gulder T.A.M.
Schäberle T.F.
Justus Liebig University of Giessen
Publisher(s)
Royal Society of Chemistry
Abstract
The cyanobacteriumFischerella ambiguais a natural producer of polychlorinated aromatic compounds, the ambigols A-E. The biosynthetic gene cluster (BGC) of these highly halogenated triphenyls has been recently identified by heterologous expression. It consists of 10 genes namedab1-10. Two of the encoded enzymes,i.e.Ab2 and Ab3, were identified byin vitroandin vivoassays as cytochrome P450 enzymes responsible for biaryl and biaryl ether formation. The key substrate for these P450 enzymes is 2,4-dichlorophenol, which in turn is derived from the precursor 3-chloro-4-hydroxybenzoic acid. Here, the biosynthetic steps leading towards 3-chloro-4-hydroxybenzoic acid were investigated byin vitroassays. Ab7, an isoenzyme of a 3-deoxy-7-phosphoheptulonate (DAHP) synthase, is involved in chorismate biosynthesis by the shikimate pathway. Chorismate in turn is further converted by a dedicated chorismate lyase (Ab5) yielding 4-hydroxybenzoic acid (4-HBA). The stand alone adenylation domain Ab6 is necessary to activate 4-HBA, which is subsequently tethered to the acyl carrier protein (ACP) Ab8. The Ab8 bound substrate is chlorinated by Ab10 inmetaposition yielding 3-Cl-4-HBA, which is then transfered by the condensation (C) domain to the peptidyl carrier protein and released by the thioesterase (TE) domain of Ab9. The released product is then expected to be the dedicated substrate of the halogenase Ab1 producing the monomeric ambigol building block 2,4-dichlorophenol.
Start page
2302
End page
2311
Volume
19
Issue
10
Language
English
OCDE Knowledge area
Biología celular, Microbiología Bioquímica, Biología molecular
Scopus EID
2-s2.0-85102833822
PubMed ID
Source
Organic and Biomolecular Chemistry
ISSN of the container
14770520
Sponsor(s)
We thank Tilman Weber (Technical University of Denmark, DTU) for providing the Fre expression vector. I D. M. Kresna thanks to the Deutscher Akademischer Austauschdienst (DAAD) for the Ph.D. scholarship. Luis Linares Otoya thanks Fondo para la Innovación, la Ciencia y la Tecnología (FINCyT-Innovate Peru) for his fellowship. E. R. D. thanks the Deutsche Bundesstiftung Umwelt (DBU) for her Ph.D. scholarship and CIPSM-Women for funding. T. M. M. thanks the Stiftung der Deutschen Wirtschaft (sdw) for funding. T. A. M. G. thanks the DFG for generous financial support of the work in our laboratory (Emmy Noether program (GU 1233/1-1).
Sources of information: Directorio de Producción Científica Scopus