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首页> 外文期刊>Applied and Environmental Microbiology >Two Enzymes of a Complete Degradation Pathway for Linear Alkylbenzenesulfonate (LAS) Surfactants: 4-Sulfoacetophenone Baeyer-Villiger Monooxygenase and 4-Sulfophenylacetate Esterase in Comamonas testosteroni KF-1
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Two Enzymes of a Complete Degradation Pathway for Linear Alkylbenzenesulfonate (LAS) Surfactants: 4-Sulfoacetophenone Baeyer-Villiger Monooxygenase and 4-Sulfophenylacetate Esterase in Comamonas testosteroni KF-1

机译:线性烷基苯磺酸盐(LAS)表面活性剂完全降解途径的两种酶:睾丸激素KF-1中的4-磺基乙酰苯Baeyer-Villiger单加氧酶和4-磺基苯乙酸酯酶

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Complete biodegradation of the surfactant linear alkylbenzenesulfonate (LAS) is accomplished by complex bacterial communities in two steps. First, all LAS congeners are degraded into about 50 sulfophenylcarboxylates (SPC), one of which is 3-(4-sulfophenyl)butyrate (3-C4-SPC). Second, these SPCs are mineralized. 3-C4-SPC is mineralized by Comamonas testosteroni KF-1 in a process involving 4-sulfoacetophenone (SAP) as a metabolite and an unknown inducible Baeyer-Villiger monooxygenase (BVMO) to yield 4-sulfophenyl acetate (SPAc) from SAP (SAPMO enzyme); hydrolysis of SPAc to 4-sulfophenol and acetate is catalyzed by an unknown inducible esterase (SPAc esterase). Transcriptional analysis showed that one of four candidate genes for BVMOs in the genome of strain KF-1, as well as an SPAc esterase candidate gene directly upstream, was inducibly transcribed during growth with 3-C4-SPC. The same genes were identified by enzyme purification and peptide fingerprinting-mass spectrometry when SAPMO was enriched and SPAc esterase purified to homogeneity by protein chromatography. Heterologously overproduced pure SAPMO converted SAP to SPAc and was active with phenylacetone and 4-hydroxyacetophenone but not with cyclohexanone and progesterone. SAPMO showed the highest sequence homology to the archetypal phenylacetone BVMO (57%), followed by steroid BVMO (55%) and 4-hydroxyacetophenone BVMO (30%). Finally, the two pure enzymes added sequentially, SAPMO with NADPH and SAP, and then SPAc esterase, catalyzed the conversion of SAP via SPAc to 4-sulfophenol and acetate in a 1:1:1:1 molar ratio. Hence, the first two enzymes of a complete LAS degradation pathway were identified, giving evidence for the recruitment of members of the very versatile type I BVMO and carboxylester hydrolase enzyme families for the utilization of a xenobiotic compound by bacteria.
机译:表面活性剂线性烷基苯磺酸盐(LAS)的完全生物降解可通过复杂的细菌群落分两步完成。首先,将所有LAS同系物降解为约50个磺基苯基羧酸盐(SPC),其中之一是3-(4-磺基苯基)丁酸酯(3-C4-SPC)。其次,这些SPC是矿化的。 3-C4-SPC被Comamonas testosteroni KF-1矿化,该过程涉及以4-磺基乙酰苯(SAP)作为代谢产物和未知的诱导型Baeyer-Villiger单加氧酶(BVMO)从SAP(SAPMO)产生4-磺基乙酸苯酯(SPAc)酶); SPAc水解为4-磺基苯酚和乙酸盐被未知的可诱导酯酶(SPAc酯酶)催化。转录分析表明,在菌株KF-1的基因组中,BVMOs的四个候选基因之一以及直接上游的SPAc酯酶候选基因在3-C4-SPC的生长过程中被诱导转录。富集SAPMO并通过蛋白质色谱将SPAc酯酶纯化至同质时,可通过酶纯化和肽指纹质谱法鉴定相同的基因。异源过量生产的纯SAPMO将SAP转化为SPAc,并与苯丙酮和4-羟基苯乙酮具有活性,而与环己酮和孕酮则没有活性。 SAPMO与原型苯丙酮BVMO(57%)的序列同源性最高,其次是类固醇BVMO(55%)和4-羟基苯乙酮BVMO(30%)。最后,依次加入的两种纯酶,即带有NADPH和SAP的SAPMO,然后是SPAc酯酶,以1:1:1:1的摩尔比催化通过SPAc将SAP转化为4-磺酚和乙酸酯。因此,确定了完整的LAS降解途径的前两种酶,为募集非常通用的I型BVMO和羧酸酯水解酶家族的成员提供了证据,以供细菌利用异种生物化合物。

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