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鞘氨醇单胞菌属Kp5.2的苯乙烯氧化物异构酶

Styrene oxide isomerase of Sphingopyxis sp. Kp5.2.

作者信息

Oelschlägel Michel, Zimmerling Juliane, Schlömann Michael, Tischler Dirk

机构信息

Interdisciplinary Ecological Center, Environmental Microbiology Group, TU Bergakademie Freiberg, Leipziger Strasse 29, 09599 Freiberg, Germany.

出版信息

Microbiology (Reading). 2014 Nov;160(Pt 11):2481-2491. doi: 10.1099/mic.0.080259-0. Epub 2014 Sep 3.

Abstract

Styrene oxide isomerase (SOI) catalyses the isomerization of styrene oxide to phenylacetaldehyde. The enzyme is involved in the aerobic styrene catabolism via side-chain oxidation and allows the biotechnological production of flavours. Here, we reported the isolation of new styrene-degrading bacteria that allowed us to identify novel SOIs. Out of an initial pool of 87 strains potentially utilizing styrene as the sole carbon source, just 14 were found to possess SOI activity. Selected strains were classified phylogenetically based on 16S rRNA genes, screened for SOI genes and styrene-catabolic gene clusters, as well as assayed for SOI production and activity. Genome sequencing allowed bioinformatic analysis of several SOI gene clusters. The isolate Sphingopyxis sp. Kp5.2 was most interesting in that regard because to our knowledge this is the first time it was shown that a member of the family Sphingomonadaceae utilized styrene as the sole carbon source by side-chain oxidation. The corresponding SOI showed a considerable activity of 3.1 U (mg protein)(-1). Most importantly, a higher resistance toward product inhibition in comparison with other SOIs was determined. A phylogenetic analysis of SOIs allowed classification of these biocatalysts from various bacteria and showed the exceptional position of SOI from strain Kp5.2.

摘要

氧化苯乙烯异构酶(SOI)催化氧化苯乙烯异构化为苯乙醛。该酶通过侧链氧化参与好氧苯乙烯分解代谢,并可用于香料的生物技术生产。在此,我们报道了新型苯乙烯降解细菌的分离,这使我们能够鉴定出新的SOI。在最初的87株可能以苯乙烯作为唯一碳源的菌株中,仅发现14株具有SOI活性。基于16S rRNA基因对所选菌株进行系统发育分类,筛选SOI基因和苯乙烯分解代谢基因簇,并检测SOI的产生和活性。基因组测序允许对几个SOI基因簇进行生物信息学分析。在这方面,分离出的鞘氨醇单胞菌属菌株Kp5.2最为有趣,因为据我们所知,这是首次表明鞘脂单胞菌科的一个成员通过侧链氧化利用苯乙烯作为唯一碳源。相应的SOI显示出相当高的活性,为3.1 U(mg蛋白质)-1。最重要的是,与其他SOI相比,其对产物抑制的耐受性更高。对SOI的系统发育分析允许对来自各种细菌的这些生物催化剂进行分类,并显示了菌株Kp5.2的SOI的特殊地位。

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