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VerA Gene is Involved in the Step to Make the Xanthone Structure of Demethylsterigmatocystin in Aflatoxin Biosynthesis.


ABSTRACT: In the biosynthesis of aflatoxin, verA, ver-1, ordB, and hypA genes of the aflatoxin gene cluster are involved in the pathway from versicolorin A (VA) to demethylsterigmatocystin (DMST). We herein isolated each disruptant of these four genes to determine their functions in more detail. Disruptants of ver-1, ordB, and hypA genes commonly accumulated VA in their mycelia. In contrast, the verA gene disruptant accumulated a novel yellow fluorescent substance (which we named HAMA) in the mycelia as well as culture medium. Feeding HAMA to the other disruptants commonly caused the production of aflatoxins B1 (AFB1) and G1 (AFG1). These results indicate that HAMA pigment is a novel aflatoxin precursor which is involved at a certain step after those of ver-1, ordB, and hypA genes between VA and DMST. HAMA was found to be an unstable substance to easily convert to DMST and sterigmatin. A liquid chromatography-mass spectrometry (LC-MS) analysis showed that the molecular mass of HAMA was 374, and HAMA gave two close major peaks in the LC chromatogram in some LC conditions. We suggest that these peaks correspond to the two conformers of HAMA; one of them would be selectively bound on the substrate binding site of VerA enzyme and then converted to DMST. VerA enzyme may work as a key enzyme in the creation of the xanthone structure of DMST from HAMA.

SUBMITTER: Zeng H 

PROVIDER: S-EPMC7503927 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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<i>verA</i> Gene is Involved in the Step to Make the Xanthone Structure of Demethylsterigmatocystin in Aflatoxin Biosynthesis.

Zeng Hongmei H   Cai Jingjing J   Hatabayashi Hidemi H   Nakagawa Hiroyuki H   Nakajima Hiromitsu H   Yabe Kimiko K  

International journal of molecular sciences 20200902 17


In the biosynthesis of aflatoxin, <i>verA</i>, <i>ver-1</i>, <i>ordB</i>, and <i>hypA</i> genes of the aflatoxin gene cluster are involved in the pathway from versicolorin A (VA) to demethylsterigmatocystin (DMST). We herein isolated each disruptant of these four genes to determine their functions in more detail. Disruptants of <i>ver-1</i>, <i>ordB</i>, and <i>hypA</i> genes commonly accumulated VA in their mycelia. In contrast, the <i>verA</i> gene disruptant accumulated a novel yellow fluores  ...[more]

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