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[假单胞菌属菌株中芳香环间位裂解酶的比较研究:联苯和间甲苯酸分解代谢的质粒和染色体遗传控制]

[Comparative study of aromatic ring meta-cleavage enzymes in Pseudomonas strains with plasmid and chromosomal genetic control of the catabolism of biphenyl and m-toluate].

作者信息

Selifonov S A, Starozoĭtov I I

出版信息

Biokhimiia. 1990 Dec;55(12):2171-81.

PMID:2096950
Abstract

It was shown that two different enzymes of aromatic ring oxidative meta-cleavage (2,3-dihydroxybiphenyl-1,2-dioxygenase), DBO and catechol-2,3-dioxygenase, C230) function in Pseudomonas strains with a plasmid and chromosomal genetic control of biphenyl and toluate catabolism. A comparative analysis of DBO's and C230's expressed by the pBS241 biphenyl degradative plasmid in P. putida BS893, pBS311 in P. putida U83, chromosomal genes in P. putida BF and C230 from P. putida PaW160 (pWWO) was carried out. It was found that the DBO's of all strains under study are highly specialized enzymes in respect of 2,3-dihydroxybiphenyl cleavage and are also able to cleave 3-methyl-catechol and catechol (but not 4-methylcatechol) at low rates. In contrast with DBO's, in Pseudomonas strains the substrate specificities of all C230's are variable. The C230's expressed by the D-plasmids pBS241 and pBC311 have a moderate affinity for catechol, 3-methyl- and 4-methylcatechol, but are unable to cleave 2,3-dihydroxybiphenyl. The C230 which is encoded by the chromosomal structure gene from P. putida BF is very similar to C230 which codes for the TOL-plasmid pWWO. These plasmid differ from C230's expressed by biphenyl D-plasmids due to their capability to cleave 2,3-dihydroxybiphenyl in addition to catechol cleavage. All DBO's and C230's under study possess a number of properties that are typical for the enzymes having an oxidative meta-cleaving effect. The different roles of these enzymes in biphenyl and toluate catabolism in Pseudomonas strains are discussed.

摘要

结果表明,在具有联苯和甲苯酸盐分解代谢的质粒和染色体遗传控制的假单胞菌菌株中,存在两种不同的芳香环氧化间位裂解酶(2,3 - 二羟基联苯 - 1,2 - 双加氧酶,DBO和儿茶酚 - 2,3 - 双加氧酶,C230)发挥作用。对恶臭假单胞菌BS893中由pBS241联苯降解质粒表达的DBO和C230、恶臭假单胞菌U83中由pBS311表达的DBO和C230、恶臭假单胞菌BF中的染色体基因以及恶臭假单胞菌PaW160(pWWO)中的C230进行了比较分析。结果发现,所有研究菌株的DBO在2,3 - 二羟基联苯裂解方面都是高度专一的酶,并且也能够以低速率裂解3 - 甲基儿茶酚和儿茶酚(但不能裂解4 - 甲基儿茶酚)。与DBO不同,在假单胞菌菌株中,所有C230的底物特异性是可变的。由D - 质粒pBS241和pBC311表达的C230对儿茶酚、3 - 甲基和4 - 甲基儿茶酚具有中等亲和力,但不能裂解2,3 - 二羟基联苯。由恶臭假单胞菌BF的染色体结构基因编码的C230与编码TOL - 质粒pWWO的C230非常相似。这些质粒与联苯D - 质粒表达的C230不同,因为它们除了能够裂解儿茶酚外,还能够裂解2,3 - 二羟基联苯。所有研究中的DBO和C230都具有一些对于具有氧化间位裂解作用的酶来说是典型的特性。讨论了这些酶在假单胞菌菌株中联苯和甲苯酸盐分解代谢中的不同作用。

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