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首页> 外文期刊>Environmental microbiology >Shotgun proteomics suggests involvement of additional enzymes in dioxin degradation by Sphingomonas wittichii RW1
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Shotgun proteomics suggests involvement of additional enzymes in dioxin degradation by Sphingomonas wittichii RW1

机译:弹枪蛋白质组学表明额外的酶参与了Sphingomonas wittichii RW1对二恶英的降解

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Chlorinated congeners of dibenzo-p-dioxin and dibenzofuran are widely dispersed pollutants that can be treated using microorganisms, such as the Sphingomonas wittichii RW1 bacterium, able to transform some of them into non-toxic substances. The enzymes of the upper pathway for dibenzo-p-dioxin degradation in S. wittichii RW1 have been biochemically and genetically characterized, but its genome sequence indicated the existence of a tremendous potential for aromatic compound transformation, with 56 ring-hydroxylating dioxygenase subunits, 34 extradiol dioxygenases and 40 hydrolases. To further characterize this enzymatic arsenal, new methodological approaches should be employed. Here, a large shotgun proteomic survey was performed on cells grown on dibenzofuran, dibenzo-p-dioxin and 2-chlorodibenzo-p-dioxin, and compared with growth on acetate. Changes in the proteome were monitored over time. In total, 502 proteins were observed and quantified using a label-free mass spectrometrybased approach; all data were deposited to the ProteomeXchange (PXD000403). Our results confirmed the roles of the dioxin dioxygenase DxnA1A2, trihydroxybiphenyl dioxygenase DbfB, meta-cleavage product hydrolase DxnB and reductase RedA2, and corroborated the proposed involvement of the Swit_3046 dioxygenase and DxnB2 hydrolase. Trends across substrates and over the course of growth do not support concerted pathway regulation and suggest the involvement of an additional hydrolase and several TonB-dependent receptors.
机译:二苯并-对-二恶英和二苯并呋喃的氯化同源物是广泛分布的污染物,可以使用微生物(例如维氏鞘氨醇单胞菌RW1细菌)进行处理,从而能够将其中的一些转化为无毒物质。 wittichii RW1中二苯并-对-二恶英降解的上游途径的酶已进行了生化和遗传学表征,但其基因组序列表明存在巨大的芳香族化合物转化潜力,其中有56个环羟基化双加氧酶亚基,34 Extradiol双加氧酶和40种水解酶。为了进一步表征这种酶库,应该采用新的方法学方法。在这里,对在二苯并呋喃,二苯并-对-二恶英和2-氯二苯并-对-二恶英上生长的细胞进行了大型shot弹蛋白质组研究,并将其与乙酸盐上的生长进行了比较。随时间监测蛋白质组的变化。总共观察到502种蛋白质,并使用基于无标记质谱的方法进行了定量;所有数据都存放到ProteomeXchange(PXD000403)。我们的结果证实了二恶英双加氧酶DxnA1A2,三羟基联苯双加氧酶DbfB,元裂解产物水解酶DxnB和还原酶RedA2的作用,并证实了Swit_3046双加氧酶和DxnB2水解酶的拟议参与。跨底物和整个生长过程的趋势不支持一致的途径调节,并暗示了另外的水解酶和几种TonB依赖性受体的参与。

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