首页> 外文期刊>Applied and Environmental Microbiology >Stereochemistry during aflatoxin biosynthesis: cyclase reaction in the conversion of versiconal to versicolorin B and racemization of versiconal hemiacetal acetate.
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Stereochemistry during aflatoxin biosynthesis: cyclase reaction in the conversion of versiconal to versicolorin B and racemization of versiconal hemiacetal acetate.

机译:黄曲霉毒素生物合成过程中的立体化学:versiconal转化为versicolorin B的环化酶反应以及versiconal半缩醛乙酸酯的消旋化。

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摘要

(1'R,2'S)-(-)-aflatoxins are produced from racemic versiconal hemiacetal acetate (VHA) through complicated pathways, including a metabolic grid involving VHA, versiconol acetate (VOAc), versiconol, and versiconal (VHOH), and a reaction sequence from VHOH to versicolorin A (VA) through (-)-versicolorin B (VB) [or (+/-)-versicolorin C] (K. Yabe, Y. Ando, and Y. Hamasaki, J. Gen. Microbiol. 137:2469-2475, 1991; K. Yabe, Y. Ando, and T. Hamasaki, Agric. Biol. Chem. 55:1907-1911, 1991). In this study, we examined stereochemical changes of substances formed during the conversion of VHA to VA by using chiral high-performance liquid chromatography. In cell-free experiments using the cytosol of Aspergillus parasiticus NIAH-26, both (2'S)- and (2'R)-VOAc enantiomers were formed at about a 1:2 ratio from racemic VHA in the presence of NADPH and dichlorvos (dimethyl 2,2-dichlorovinylphosphate). Also, the esterase activity catalyzing the conversion of VHA to VHOH or of VOAc to versiconol did not show the stereospecificity for the 2' carbon atom of VHA or VOAc. However, when racemic VHA or racemic VHOH was incubated with the cytosol, (1'R,2'S)-(-)-VB was formed exclusively. Furthermore, only (1'R,2'S)-(-)-VB, and not (1'S,2'R)-(+) antipode, served as a substrate for desaturase activity in the microsome fraction catalyzing the conversion of VB to VA. These results demonstrate that the stereoconfiguration of bis-furan moiety in aflatoxin molecules is determined by the cyclase enzyme catalyzing the reaction from VHOH to VB, and the (1'R,2'S)-(-) configuration was further confirmed by the subsequent desaturase reaction. Remarkably, we found nonenzymatic racemization in both the (2'R)- and (2'S)-VHA enantiomers, and it was dependent upon the temperature and alkaline conditions.
机译:(1'R,2'S)-(-)-黄曲霉毒素是通过外消旋的全锥状半缩醛乙酸酯(VHA)通过复杂的途径产生的,包括涉及VHA,醋酸凡高固醇(VOAc),凡士康和凡高酚(VHOH)的代谢网格,以及VHOH通过(-)-versicolorin B(VB)[或(+/-)-versicolorin C]从VHOH到versicolorin A(VA)的反应序列(K. Yabe,Y. Ando,和Y. Hamasaki,J.Gen。Microbiol 137:2469-2475,1991; K.Yabe,Y.Ando和T.Hamasaki,农业生物化学55:1907-1911,1991)。在这项研究中,我们通过使用手性高效液相色谱法检查了VHA转化为VA期间形成的物质的立体化学变化。在使用寄生曲霉NIAH-26的细胞质进行的无细胞实验中,在存在NADPH和敌敌畏(二甲基)的情况下,由外消旋VHA以约1:2的比例形成了(2'S)-和(2'R)-VOAc对映体2,2-二氯乙烯基磷酸酯)。同样,催化VHA转化为VHOH或VOAc转化为versiconol的酯酶活性对VHA或VOAc的2'碳原子没有立体定向性。然而,当外消旋的VHA或外消旋的VHOH与细胞溶质一起温育时,(1'R,2'S)-(-)-VB仅形成。此外,只有(1'R,2'S)-(-)-VB,而不是(1'S,2'R)-(+)对映体,在微粒体级分中催化VB转化为VA的去饱和酶活性用作底物。这些结果表明,黄曲霉毒素分子中双呋喃部分的立体构型是由环化酶催化从VHOH到VB的反应确定的,(1'R,2'S)-(-)构型由随后的去饱和酶反应进一步证实。 。值得注意的是,我们在(2'R)-和(2'S)-VHA对映异构体中均发现了非酶消旋作用,这取决于温度和碱性条件。

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