Yabe K, Matsuyama Y, Ando Y, Nakajima H, Hamasaki T
National Institute of Animal Health, Ibaraki, Japan.
Appl Environ Microbiol. 1993 Aug;59(8):2486-92. doi: 10.1128/aem.59.8.2486-2492.1993.
A reaction sequence, norsolorinic acid (NA)-->averantin (AVN)-->5'-hydroxyaverantin (HAVN)-->averufin (AVR), is the early part of a biosynthetic pathway for aflatoxins. In this study, we determined the stereochemical relationship among these metabolites by using chiral high-performance liquid chromatography. In cell-free experiments using the cytosol fraction of Aspergillus parasiticus NIAH-26, (1'S)-AVN was exclusively produced from NA in the presence of NADPH. Also, only (1'S)-AVN, and not (1'R)-AVN, served as a substrate for the reverse reaction from AVN to NA. When the microsome fraction of NIAH-26 was incubated with (1'S)-AVN in the presence of NADPH, two HAVN diastereomers and one AVR enantiomer were formed, whereas these substances were never produced from (1'R)-AVN. Moreover, (1'S,5'R)-AVR was exclusively formed from both HAVN diastereomers by the cytosol fraction in the presence of NAD. The feeding experiments using this mutant showed that aflatoxins were produced from (1'S,5'R)-AVR but not from (1'R,5'S)-AVR. These results indicate that the enzymes involved in this pathway show strict stereospecificity to their substrates and that the configuration of (1'S,5'R)-AVR leading to the formation of aflatoxins is due to the stereospecificity of NA dehydrogenase which catalyzes the reaction between (1'S)-AVN and NA.
一个反应序列,即诺索尔紫红质酸(NA)→黄绿青霉素(AVN)→5'-羟基黄绿青霉素(HAVN)→红曲霉素(AVR),是黄曲霉毒素生物合成途径的早期部分。在本研究中,我们通过使用手性高效液相色谱法确定了这些代谢物之间的立体化学关系。在使用寄生曲霉NIAH - 26胞质溶胶部分进行的无细胞实验中,在NADPH存在的情况下,(1'S)-AVN仅由NA产生。此外,只有(1'S)-AVN,而不是(1'R)-AVN,作为从AVN到NA的逆反应的底物。当NIAH - 26的微粒体部分在NADPH存在的情况下与(1'S)-AVN一起孵育时,形成了两种HAVN非对映异构体和一种AVR对映体,而这些物质从未由(1'R)-AVN产生。此外,在NAD存在的情况下,胞质溶胶部分从两种HAVN非对映异构体中仅形成了(1'S,5'R)-AVR。使用该突变体的饲喂实验表明,黄曲霉毒素是由(1'S,5'R)-AVR产生的,而不是由(1'R,5'S)-AVR产生的。这些结果表明,参与该途径的酶对其底物表现出严格的立体特异性,并且导致黄曲霉毒素形成的(1'S,5'R)-AVR的构型是由于催化(1'S)-AVN与NA之间反应的NA脱氢酶的立体特异性。