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二苯并呋喃的细菌和真菌氧化作用。

Bacterial and fungal oxidation of dibenzofuran.

作者信息

Cerniglia C E, Morgan J C, Gibson D T

出版信息

Biochem J. 1979 Apr 15;180(1):175-85. doi: 10.1042/bj1800175.

Abstract

Cunninghamella elegans and a mutant strain (B8/36) of Beijerinckia both oxidized dibenzofuran to 2,3-dihydroxy-2,3-dihydrodibenzofuran. The bacterial metabolite was extremely unstable and, in the presence of acid, was rapidly converted into a mixture of 2- and 3-hydroxydibenzofuran. In contrast, the 2,3-dihydroxy-2,3-dihydrodibenzofuran formed by C. elegans was stable and only yielded 2- and 3-hydroxydibenzofuran when heated under acidic conditions. The results suggest that Beijerinckia B8/36 and C. elegans form the respective cis- and trans-isomers of 2,3-dihydroxy-2,3-dihydrodibenzofuran. C. elegans also oxidized dibenzofuran to 2- and 3-hydroxydibenzofuran under conditions that would not lead to the dehydration of the trans-dihydrodiol. These observations implicate the initial formation of dibenzofuran- 2,3-epoxide in the fungal oxidation of dibenzofuran. Beijerinckia B8/36 also produced a second unstable dihydrodiol that was tentatively identified as cis-1,2-dihydroxy-1,2-dihydrodibenzofuran. This compound gave 2-hydroxydibenzofuran as the major dehydration product and the cis relative stereochemistry was suggested by the isolation and characterization of an isopropylidine derivative. A preparation of cis-naphthalene dihydrodiol dehydrogenase and cell extracts of the parent strain of Beijerinckia oxidized both bacterial dihydrodiols to catechols. Cell extracts prepared from C. elegans catalysed an analogous oxidation of trans-2,3-dihydroxy-2,3-dihydrodibenzofuran to 2,3-dihydroxydibenzofuran. The latter product was also isolated and identified from culture filtrates. The results suggest that bacteria and fungi utilize different mechanisms to initiate the oxidation of dibenzofuran.

摘要

线虫状小克银汉霉和拜耶林克氏菌的一个突变菌株(B8/36)都能将二苯并呋喃氧化为2,3 - 二羟基 - 2,3 - 二氢二苯并呋喃。该细菌代谢产物极不稳定,在酸性条件下会迅速转化为2 - 羟基二苯并呋喃和3 - 羟基二苯并呋喃的混合物。相比之下,线虫状小克银汉霉形成的2,3 - 二羟基 - 2,3 - 二氢二苯并呋喃是稳定的,只有在酸性条件下加热时才会生成2 - 羟基二苯并呋喃和3 - 羟基二苯并呋喃。结果表明,拜耶林克氏菌B8/36和线虫状小克银汉霉分别形成了2,3 - 二羟基 - 2,3 - 二氢二苯并呋喃的顺式和反式异构体。线虫状小克银汉霉在不会导致反式二氢二醇脱水的条件下也能将二苯并呋喃氧化为2 - 羟基二苯并呋喃和3 - 羟基二苯并呋喃。这些观察结果表明在二苯并呋喃的真菌氧化过程中首先形成了二苯并呋喃 - 2,3 - 环氧化物。拜耶林克氏菌B8/36还产生了另一种不稳定的二氢二醇,初步鉴定为顺式 - 1,2 - 二羟基 - 1,2 - 二氢二苯并呋喃。该化合物以2 - 羟基二苯并呋喃作为主要脱水产物,通过异丙叉衍生物的分离和表征表明其具有顺式相对立体化学结构。一种顺式萘二氢二醇脱氢酶制剂和拜耶林克氏菌亲本菌株的细胞提取物都能将两种细菌二氢二醇氧化为儿茶酚。从线虫状小克银汉霉制备的细胞提取物催化反式 - 2,3 - 二羟基 - 2,3 - 二氢二苯并呋喃类似地氧化为2,3 - 二羟基二苯并呋喃。后者产物也从培养滤液中分离和鉴定出来。结果表明细菌和真菌利用不同的机制启动二苯并呋喃的氧化。

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