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樟脑再研究:恶臭假单胞菌中一种独特的单加氧酶参与2-氧代-δ3-4,5,5-三甲基环戊烯基乙酸的代谢

Camphor revisited: involvement of a unique monooxygenase in metabolism of 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid by Pseudomonas putida.

作者信息

Ougham H J, Taylor D G, Trudgill P W

出版信息

J Bacteriol. 1983 Jan;153(1):140-52. doi: 10.1128/jb.153.1.140-152.1983.

DOI:10.1128/jb.153.1.140-152.1983
PMID:6848481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC217351/
Abstract

Previously, Pseudomonas putida was shown to degrade (+)-camphor, and cleavage of the first ring of the bicyclic structure involved two monooxygenases (a hydroxylase and a ring oxygen-inserting enzyme), a dehydrogenase, and spontaneous cleavage of an unstable oxygenation product (lactone). Cleavage of the second ring was not demonstrated but was assumed also to occur by ring oxygen insertion, since the predicted oxygenation product was extracted from whole-cell incubation systems. Our investigation established that metabolism of the first ring cleavage intermediate, 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid, occurred through the sequential action of two inducible enzymes, a coenzyme A ester synthetase and an oxygenase. The oxygenase was purified to homogeneity and had a molecular weight of 106,000. This enzyme carried a single molecule of flavin adenine dinucleotide and consisted of two identical subunits. Iron was not present at a significant level. The oxygenase was specific for NADPH as the electron donor and absolutely specific for the coenzyme A ester of 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid as the substrate. The reaction stoichiometry was compatible with this enzyme being a monooxygenase, and a mass spectral analysis of the methyl ester of the product confirmed the insertion of a single oxygen atom. The enzyme appeared to be analogous to, although distinct from. 2,5-diketocamphane 1,2-monooxygenase in catalyzing a "biological Baeyer-Villiger" reaction with the formation of a lactone. Structural analogy suggested that this lactone, like the first, was also unstable and susceptible to spontaneous ring opening, although this was not experimentally established.

摘要

此前已表明,恶臭假单胞菌能够降解(+)-樟脑,双环结构第一环的裂解涉及两种单加氧酶(一种羟化酶和一种环加氧插入酶)、一种脱氢酶以及不稳定氧化产物(内酯)的自发裂解。第二环的裂解虽未得到证实,但由于从全细胞培养系统中提取到了预测的氧化产物,所以推测也是通过环加氧插入发生的。我们的研究确定,第一环裂解中间体2-氧代-δ3-4,5,5-三甲基环戊烯基乙酸的代谢是通过两种诱导酶的顺序作用进行的,一种是辅酶A酯合成酶,另一种是加氧酶。加氧酶被纯化至同质,分子量为106,000。该酶携带一分子黄素腺嘌呤二核苷酸,由两个相同的亚基组成。铁的含量不显著。加氧酶对作为电子供体的NADPH具有特异性,对2-氧代-δ3-4,5,5-三甲基环戊烯基乙酸的辅酶A酯作为底物具有绝对特异性。反应化学计量与该酶作为单加氧酶相符,产物甲酯的质谱分析证实插入了单个氧原子。该酶似乎与2,5-二酮樟脑1,­2-单加氧酶类似,尽管有所不同,它催化“生物拜耳-维利格”反应形成内酯。结构相似性表明,这种内酯与第一种类似,也不稳定,易于自发开环,尽管这尚未通过实验证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a8b/217351/a7295ea141b8/jbacter00248-0169-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a8b/217351/a7295ea141b8/jbacter00248-0169-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a8b/217351/a7295ea141b8/jbacter00248-0169-a.jpg

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