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首页> 外文期刊>Applied and Environmental Microbiology >Possible regulatory role for nonaromatic carbon sources in styrene degradation by Pseudomonas putida CA-3.
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Possible regulatory role for nonaromatic carbon sources in styrene degradation by Pseudomonas putida CA-3.

机译:非芳香族碳源在恶臭假单胞菌CA-3降解苯乙烯中的可能调节作用。

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摘要

Styrene metabolism in styrene-degrading Pseudomonas putida CA-3 cells has been shown to proceed via styrene oxide, phenylacetaldehyde, and phenylacetic acid. The initial step in styrene degradation by strain CA-3 is oxygen-dependent epoxidation of styrene to styrene oxide, which is subsequently isomerized to phenylacetaldehyde. Phenylacetaldehyde is then oxidized to phenylacetic acid. Styrene, styrene oxide, and phenylacetaldehyde induce the enzymes involved in the degradation of styrene to phenylacetic acid by P. putida CA-3. Phenylacetic acid-induced cells do not oxidize styrene or styrene oxide. Thus, styrene degradation by P. putida CA-3 can be subdivided further into an upper pathway which consists of styrene, styrene oxide, and phenylacetaldehyde and a lower pathway which begins with phenylacetic acid. Studies of the repression of styrene degradation by P. putida CA-3 show that glucose has no effect on the activity of styrene-degrading enzymes. However, both glutamate and citrate repress styrene degradation and phenylacetic acid degradation, showing a common control mechanism on upper pathway and lower pathway intermediates.
机译:已显示苯乙烯降解恶臭假单胞菌CA-3细胞中的苯乙烯代谢是通过氧化苯乙烯,苯乙醛和苯乙酸进行的。由CA-3菌株降解苯乙烯的第一步是将氧依赖的环氧化成苯乙烯,然后再异构化成苯乙醛。然后将苯乙醛氧化为苯乙酸。苯乙烯,氧化苯乙烯和苯乙醛可诱导恶臭假单胞菌CA-3将苯乙烯降解为苯乙酸的相关酶。苯乙酸诱导的细胞不会氧化苯乙烯或氧化苯乙烯。因此,恶臭假单胞菌CA-3对苯乙烯的降解可进一步细分为由苯乙烯,氧化苯乙烯和苯乙醛组成的上部途径和从苯乙酸开始的下部途径。对恶臭假单胞菌CA-3抑制苯乙烯降解的研究表明,葡萄糖对苯乙烯降解酶的活性没有影响。然而,谷氨酸盐和柠檬酸盐均抑制苯乙烯降解和苯乙酸降解,显示出对上途径中间体和下途径中间体的共同控制机制。

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