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黄曲霉毒素生物合成中的两种不同的O-甲基转移酶。

Two distinct O-methyltransferases in aflatoxin biosynthesis.

作者信息

Yabe K, Ando Y, Hashimoto J, Hamasaki T

机构信息

National Institute of Animal Health, Ibaraki, Japan.

出版信息

Appl Environ Microbiol. 1989 Sep;55(9):2172-7. doi: 10.1128/aem.55.9.2172-2177.1989.

Abstract

The substances belonging to the sterigmatocystin group bear a close structural relationship to aflatoxins. When demethylsterigmatocystin (DMST) was fed to Aspergillus parasiticus NIAH-26, which endogenously produces neither aflatoxins nor precursors in YES medium, aflatoxins B1 and G1 were produced. When dihydrodemethylsterigmatocystin (DHDMST) was fed to this mutant, aflatoxins B2 and G2 were produced. Results of the cell-free experiment with S-adenosyl-[methyl-3H]methionine showed that first the C-6-OH groups of DMST and DHDMST are methylated to produce sterigmatocystin and dihydrosterigmatocystin (O-methyltransferase I) and then the C-7-OH groups are methylated to produce O-methylsterigmatocystin (OMST) and dihydro-O-methylsterigmatocystin (DHOMST) (O-methyltransferase II). However, no methyltransferase activity was observed when either OMST, DHOMST, 5,6-dimethoxysterigmatocystin, 5-methoxysterigmatocystin, or sterigmatin was incubated with the cell extract. Treatment of the cell extract with N-ethylmaleimide inhibited O-methyltransferase I activity but not that of O-methyltransferase II. Furthermore, these O-methyltransferases were different in their protein molecules and were involved in both the reactions from DMST to OMST and DHDMST to DHOMST. The reactions described in this paper were not observed when the same mold had been cultured in YEP medium.

摘要

属于柄曲霉素类的物质与黄曲霉毒素在结构上密切相关。当将去甲基柄曲霉素(DMST)喂给寄生曲霉NIAH - 26时,该菌株在酵母提取物蔗糖(YES)培养基中内源性地既不产生黄曲霉毒素也不产生其前体,却产生了黄曲霉毒素B1和G1。当将二氢去甲基柄曲霉素(DHDMST)喂给该突变体时,产生了黄曲霉毒素B2和G2。用S - 腺苷 - [甲基 - 3H]甲硫氨酸进行的无细胞实验结果表明,首先DMST和DHDMST的C - 6 - OH基团被甲基化生成柄曲霉素和二氢柄曲霉素(O - 甲基转移酶I),然后C - 7 - OH基团被甲基化生成O - 甲基柄曲霉素(OMST)和二氢 - O - 甲基柄曲霉素(DHOMST)(O - 甲基转移酶II)。然而,当将OMST、DHOMST、5,6 - 二甲氧基柄曲霉素、5 - 甲氧基柄曲霉素或柄曲菌素与细胞提取物一起孵育时,未观察到甲基转移酶活性。用N - 乙基马来酰亚胺处理细胞提取物会抑制O - 甲基转移酶I的活性,但不抑制O - 甲基转移酶II的活性。此外,这些O - 甲基转移酶在蛋白质分子上有所不同,并且参与了从DMST到OMST以及从DHDMST到DHOMST的反应。当在酵母提取物蛋白胨(YEP)培养基中培养同一霉菌时,未观察到本文所述的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/401b/203052/beca976bbfa1/aem00102-0072-a.jpg

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