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通过基因组、蛋白质组和转录分析揭示了一株降解邻苯二酚的鞘氨醇单胞菌菌株的代谢途径和细胞适应机制。

Metabolic pathway and cell adaptation mechanisms revealed through genomic, proteomic and transcription analysis of a Sphingomonas haloaromaticamans strain degrading ortho-phenylphenol.

机构信息

Department of Biochemistry and Biotechnology, University of Thessaly, Laboratory of Plant and Environmental Biotechnology, Viopolis, 41500, Larissa, Greece.

University of South Australia, Future Industries Institute, Mawson Lakes, Australia.

出版信息

Sci Rep. 2017 Jul 25;7(1):6449. doi: 10.1038/s41598-017-06727-6.

Abstract

Ortho-phenylphenol (OPP) is a fungicide contained in agro-industrial effluents produced by fruit-packaging plants. Within the frame of developing bio-strategies to detoxify these effluents, an OPP-degrading Sphingomonas haloaromaticamans strain was isolated. Proteins/genes with a putative catabolic role and bacterium adaptation mechanisms during OPP degradation were identified via genomic and proteomic analysis. Transcription analysis of all putative catabolic genes established their role in the metabolism of OPP. The formation of key transformation products was verified by chromatographic analysis. Genomic analysis identified two orthologous operons encoding the ortho-cleavage of benzoic acid (BA) (ben/cat). The second ben/cat operon was located in a 92-kb scaffold along with (i) an operon (opp) comprising genes for the transformation of OPP to BA and 2-hydroxypenta-2,4-dienoate (and genes for its transformation) and (ii) an incomplete biphenyl catabolic operon (bph). Proteomics identified 13 up-regulated catabolic proteins when S. haloaromaticamans was growing on OPP and/or BA. Transcription analysis verified the key role of the catabolic operons located in the 92-kb scaffold, and flanked by transposases, on the transformation of OPP by S. haloaromaticamans. A flavin-dependent monoxygenase (OppA1), one of the most up-regulated proteins in the OPP-growing cells, was isolated via heterologous expression and its catabolic activity was verified in vitro.

摘要

邻苯基苯酚(OPP)是水果包装厂产生的农用工业废水中含有的一种杀菌剂。在开发生物策略以解毒这些废水的框架内,分离到了一种能够降解 OPP 的鞘氨醇单胞菌。通过基因组和蛋白质组分析,确定了具有潜在降解作用的蛋白质/基因和细菌适应 OPP 降解的机制。所有假定的降解基因的转录分析确定了它们在 OPP 代谢中的作用。通过色谱分析验证了关键转化产物的形成。基因组分析确定了两个编码邻位苯甲酸(BA)(ben/cat)邻位裂解的同源操纵子。第二个 ben/cat 操纵子位于一个 92-kb 支架上,与(i)一个操纵子(opp)一起,该操纵子包含将 OPP 转化为 BA 和 2-羟基戊二烯酸(及其转化基因)以及(ii)一个不完整的联苯降解操纵子(bph)。当鞘氨醇单胞菌以 OPP 和/或 BA 为生长基质时,蛋白质组学鉴定出 13 种上调的降解蛋白。转录分析验证了位于 92-kb 支架上的降解操纵子的关键作用,该支架由转座酶侧翼,在 S. haloaromaticamans 对 OPP 的转化中起作用。通过异源表达分离到一种黄素依赖性单加氧酶(OppA1),这是在 OPP 生长细胞中上调最明显的蛋白质之一,并在体外验证了其降解活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c833/5527002/b173a94621df/41598_2017_6727_Fig1_HTML.jpg

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