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皮状丝孢酵母中β-酮己二酸途径的酶学

Enzymology of the beta-ketoadipate pathway in Trichosporon cutaneum.

作者信息

Powlowski J B, Ingebrand J, Dagley S

出版信息

J Bacteriol. 1985 Sep;163(3):1136-41. doi: 10.1128/jb.163.3.1136-1141.1985.

Abstract

Cell extracts were prepared from Trichosporon cutaneum grown with phenol or p-cresol, and activities were assayed for enzymes catalyzing conversion of these two carbon sources into 3-ketoadipate (beta-ketoadipate) and 3-keto-4-methyladipate, respectively. When activities of each enzyme were expressed as a ratio, the rate for methyl-substituted substrate being divided by that for the unsubstituted substrate, it was apparent that p-cresol-grown cells elaborated pairs of enzymes for hydroxylation, dioxygenation, and delactonization. One enzyme of each pair was more active against its methyl-substituted substrate, and the other was more active against its unsubstituted substrate. Column chromatography was used to separate two hydroxylase activities and also 1,2-dioxygenase activities; the catechol 1,2-dioxygenases were further purified to electrophoretic homogeneity. Extracts of phenol-grown cells contained only those enzymes in this group that were more active against unsubstituted substrates. In contrast, whether cells were grown with phenol or p-cresol, only one muconate cycloisomerase (lactonizing enzyme) was elaborated which was more active against 3-methyl-cis,cis-muconate than against cis,cis-muconate; in this respect it differed from a cycloisomerase of another strain of T. cutaneum which has been characterized. The cycloisomerase was purified from both phenol-grown and p-cresol-grown cells, and some characteristics were determined.

摘要

从用苯酚或对甲酚培养的皮状丝孢酵母中制备细胞提取物,并分别测定催化这两种碳源转化为3-酮己二酸(β-酮己二酸)和3-酮-4-甲基己二酸的酶的活性。当将每种酶的活性表示为一种比率,即将甲基取代底物的速率除以未取代底物的速率时,很明显,用对甲酚培养的细胞产生了用于羟基化、双加氧和去内酯化的成对酶。每对酶中的一种对其甲基取代底物的活性更高,另一种对其未取代底物的活性更高。采用柱色谱法分离两种羟化酶活性以及1,2-双加氧酶活性;邻苯二酚1,2-双加氧酶进一步纯化至电泳纯。用苯酚培养的细胞提取物中仅含有该组中对未取代底物活性更高的那些酶。相反,无论细胞是用苯酚还是对甲酚培养,只产生一种粘康酸环异构酶(内酯化酶),该酶对3-甲基-顺,顺-粘康酸的活性比对顺,顺-粘康酸的活性更高;在这方面,它不同于已被表征的另一株皮状丝孢酵母的环异构酶。从用苯酚培养和对甲酚培养的细胞中都纯化出了该环异构酶,并测定了一些特性。

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