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首页> 外文期刊>Journal of bacteriology >Combined Genomic and Proteomic Approaches Identify Gene Clusters Involved in Anaerobic 2-Methylnaphthalene Degradation in the Sulfate-Reducing Enrichment Culture N47
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Combined Genomic and Proteomic Approaches Identify Gene Clusters Involved in Anaerobic 2-Methylnaphthalene Degradation in the Sulfate-Reducing Enrichment Culture N47

机译:基因组学和蛋白质组学相结合的方法确定了减少硫酸盐富集培养N47中厌氧2-甲基萘降解的基因簇。

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The highly enriched deltaproteobacterial culture N47 anaerobically oxidizes the polycyclic aromatic hydrocarbons naphthalene and 2-methylnaphthalene, with sulfate as the electron acceptor. Combined genome sequencing and liquid chromatography-tandem mass spectrometry-based shotgun proteome analyses were performed to identify genes and proteins involved in anaerobic aromatic catabolism. Proteome analysis of 2-methylnaphthalene-grown N47 cells resulted in the identification of putative enzymes catalyzing the anaerobic conversion of 2-methylnaphthalene to 2-naphthoyl coenzyme A (2-naphthoyl-CoA), as well as the reductive ring cleavage of 2-naphthoyl-CoA, leading to the formation of acetyl-CoA and CO2. The glycyl radical-catalyzed fumarate addition to the methyl group of 2-methylnaphthalene is catalyzed by naphthyl-2-methyl-succinate synthase (Nms), composed of α-, β-, and γ-subunits that are encoded by the genes nmsABC. Located upstream of nmsABC is nmsD, encoding the Nms-activating enzyme, which harbors the characteristic [Fe4S4] cluster sequence motifs of S-adenosylmethionine radical enzymes. The bns gene cluster, coding for enzymes involved in beta-oxidation reactions converting naphthyl-2-methyl-succinate to 2-naphthoyl-CoA, was found four intervening open reading frames further downstream. This cluster consists of eight genes (bnsABCDEFGH) corresponding to 8.1 kb, which are closely related to genes for enzymes involved in anaerobic toluene degradation within the denitrifiers “Aromatoleum aromaticum” EbN1, Azoarcus sp. strain T, and Thauera aromatica. Another contiguous DNA sequence harbors the gene for 2-naphthoyl-CoA reductase (ncr) and 16 additional genes that were found to be expressed in 2-methylnaphthalene-grown cells. These genes code for enzymes that were supposed to catalyze the dearomatization and ring cleavage reactions converting 2-naphthoyl-CoA to acetyl-CoA and CO2. Comparative sequence analysis of the four encoding subunits (ncrABCD) showed the gene product to have the closest similarity to the Azoarcus type of benzoyl-CoA reductase. The present work provides the first insight into the genetic basis of anaerobic 2-methylnaphthalene metabolism and delivers implications for understanding contaminant degradation.
机译:高度浓缩的三角洲细菌培养物N47以硫酸盐为电子受体,厌氧氧化多环芳烃萘和2-甲基萘。结合基因组测序和液相色谱-串联质谱法进行的shot弹枪蛋白质组分析,以鉴定参与厌氧芳香分解代谢的基因和蛋白质。蛋白质组学分析的2-甲基萘生长的N47细胞导致推定的酶的鉴定,该酶催化2-甲基萘厌氧转化为2-萘甲酰辅酶A(2-萘甲酰-CoA),以及2-萘甲酰的还原环裂解-CoA,导致形成乙酰-CoA和CO 2 。萘基-2-甲基琥珀酸合酶(Nms)催化2-甲基萘甲基上的糖基自由基富马酸酯加成反应,该酶由α-,β-和γ-亚基组成,这些亚基由基因 nmsABC 。位于 nmsABC 上游的是 nmsD ,编码Nms激活酶,其具有[Fe 4 S 4 ] S -腺苷甲硫氨酸自由基酶的簇序列基序。发现了 基因簇,该簇编码参与将2-甲基萘基萘甲酸琥珀酯转化为2-萘甲酰辅酶A的β-氧化反应的酶,在下游有四个插入的开放阅读框。该簇由8个基因( bnsABCDEFGH )组成,对应于8.1 kb,与反硝化剂“ Aromatoleum aromaum ” EbN1中涉及厌氧甲苯降解的酶的基因密切相关, 天牛 sp。菌株T和 Thauera aromaa 。另一个连续的DNA序列包含2-萘甲酰辅酶A还原酶( ncr )的基因和另外16个在2-甲基萘生长的细胞中表达的基因。这些基因编码的酶被认为可以催化脱芳香化反应和环裂解反应,将2-萘甲酰辅酶A转化为乙酰辅酶A和CO 2 。对四个编码亚基( ncrABCD )的比较序列分析表明,该基因产物与 Azoarcus 型苯甲酰辅酶A还原酶最相似。目前的工作提供了厌氧2-甲基萘代谢的遗传基础的第一个见解,并为理解污染物降解提供了启示。

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