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Olefin Isomerization Regiochemistries during Tandem Action of BacA and BacB on Prephenate in Bacilysin Biosynthesis.

Authors :
Parker, Jared B.
Walsh, Christopher T.
Source :
Biochemistry. 4/17/2012, Vol. 51 Issue 15, p3241-3251. 11p.
Publication Year :
2012

Abstract

BacA and BacB, the first two enzymes of the bacilysin pathway, convert prephenate to an exocylic regioisomer of dihydrohydroxyphenylpyruvate (ex-H2HPP) on the way to the epoxycyclohexanone warhead in the dipeptide antibiotic, bacilysin. BacA decarboxylates prephenate without aromatization, converting the 1,4-diene in prephenate to the endocyclic 1,3-diene in Δ4,Δ8-dihydrohydroxyphenylpyruvate (en-H2HPP). BacB then performs an allylic isomerization to bring the diene into conjugation with the 2-ketone in the product Δ3,Δ5-dihydrohydroxyphenylpyruvate (ex-H2HPP). To prove that BacA acts regiospecifically on one of the two prochiral olefins in prephenate, we generated 1,5,8-[13C]-chorismate from bacterial fermentation of 5-[13C]-glucose and in turn produced 2,4,6-[13C]-prephenate via chorismate mutase. Tandem action of BacA and BacB gave 2,4,8-[13C]-7R-ex-H2HPP, showing that BacA isomerizes only the pro-R double bond in prephenate. Nonenzymatic isomerization of the BacA product into conjugation gives only the Δ3 E-geometric isomer of Δ3,Δ5-ex-H2HPP. On the other hand, acceleration of the allylic isomerization by BacB gives a mixture of the E- and Z-geometric isomers of the 7R- product, indicating some rerouting of the flux, likely through dienolate geometric isomers. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00062960
Volume :
51
Issue :
15
Database :
Academic Search Index
Journal :
Biochemistry
Publication Type :
Academic Journal
Accession number :
86162210
Full Text :
https://doi.org/10.1021/bi300254u