首页> 外文期刊>Applied Microbiology >A Bph-Like Nitroarene Dioxygenase Catalyzes the Conversion of 3-Nitrotoluene to 3-Methylcatechol by Rhodococcus sp. Strain ZWL3NT
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A Bph-Like Nitroarene Dioxygenase Catalyzes the Conversion of 3-Nitrotoluene to 3-Methylcatechol by Rhodococcus sp. Strain ZWL3NT

机译:BPH样硝基烯二恶烷酶通过rhodococcus sp催化3-硝基甲苯至3-甲基基甲酚的转化。 应变ZWL3NT.

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All nitroarene dioxygenases reported so far originated from Nag-like naphthalene dioxygenase of Gram-negative strains, belonging to group III of aromatic ring-hydroxylating oxygenases (RHOs). Gram-positive Rhodococcus sp. strain ZWL3NT utilizes 3-nitrotoluene (3NT) as the sole source of carbon, nitrogen, and energy for growth. It was also reported that 3NT degradation was constitutive and the intermediate was 3-methylcatechol. In this study, a gene cluster ( bndA1A2A3A4 ) encoding a multicomponent dioxygenase, belonging to group IV of RHOs, was identified. Recombinant Rhodococcus imtechensis RKJ300 carrying bndA1A2A3A4 exhibited 3NT dioxygenase activity, converting 3NT into 3-methylcatechol exclusively, with nitrite release. The identity of the product 3-methylcatechol was confirmed using liquid chromatography-mass spectrometry. A time course of biotransformation showed that the 3NT consumption was almost equal to the 3-methylcatechol accumulation, indicating a stoichiometry conversion of 3NT to 3-methylcatechol. Unlike reported Nag-like dioxygenases transforming 3NT into 4-methylcatechol or both 4-methylcatechol and 3-methylcatechol, this Bph-like dioxygenase (dioxygenases homologous to the biphenyl dioxygenase from Rhodococcus sp. strain RHA1) converts 3NT to 3-methylcatechol without forming 4-methylcatechol. Furthermore, whole-cell biotransformation of strain RKJ300 with bndA1A2A3A4 and strain ZWL3NT exhibited the extended and same substrate specificity against a number of nitrobenzene or substituted nitrobenzenes, suggesting that BndA1A2A3A4 is likely the native form of 3NT dioxygenase in strain ZWL3NT.IMPORTANCE Nitroarenes are synthetic molecules widely used in the chemical industry. Microbial degradation of nitroarenes has attracted extensive attention, not only because this class of xenobiotic compounds is recalcitrant in the environment but also because the microbiologists working in this field are curious about the evolutionary origin and process of the nitroarene dioxygenases catalyzing the initial reaction in the catabolism. In contrast to previously reported nitroarene dioxygenases from Gram-negative strains, which originated from a Nag-like naphthalene dioxygenase, the 3-nitrotoluene (3NT) dioxygenase in this study is from a Gram-positive strain and is an example of a Bph-like nitroarene dioxygenase. The preference of hydroxylation of this enzyme at the 2,3 positions of the benzene ring to produce 3-methylcatechol exclusively from 3NT is also a unique property among the studied nitroarene dioxygenases. These findings will enrich our understanding of the diversity and origin of nitroarene dioxygenase in microorganisms.
机译:迄今为止,所有硝基丙烯二恶英酶均来自革兰氏阴性菌株的NAG样萘二氧基酶,属于芳香环 - 羟基氧化氧酶(RHOS)的III族。克阳性rhodococccus sp。菌株ZwL3NT利用3-硝基甲苯(3NT)作为碳,氮气和生长能量的唯一来源。还报道了3NT降解是组成型的,中间体是3-甲基基乙酚。在该研究中,鉴定了编码属于rhOS组IV的多组分二恶英酶的基因簇(BNDA1A2A3A4)。重组rhodococcus IMTechensis RKJ300携带BNDA1A2A3A4表现出3nT二氧化根酶活性,仅通过亚硝酸盐释放将3NT转化为3-甲基乙烯醇。使用液相色谱 - 质谱法确认产物3-甲基CATECHOL的同一性。生物转化的时间过程表明,3NT消耗几乎等于3-甲基加法醇的积累,表明3NT至3-甲基基甲醚的化学计量转化。与报告的NAG样DiOxyga酶转化为4-甲基基酰基或4-甲基CATECHOL和3-甲基CATECHOL,该BPH样DiOxygenase(与rhodococcus sp与双苯基二氧基酶同源的二氧化碳酶同源。rha1)转化3nt至3-甲基基替金属而不形成4 - 甲基丙醇。此外,具有BNDA1a2a3a4和菌株zwl3nt的菌株Rkj300的全细胞生物转化表现出对多个硝基苯或取代的硝基苯的延伸和相同的底物特异性,表明BNDA1a2a3a4可能是Zwl3nt的菌株中3nt二恶英酶的天然形式.Importance nitroarenes是合成分子广泛用于化学工业。 Nitroarenes的微生物降解引起了广泛的关注,不仅是因为这类异卵化合物在环境中是顽固的,而且因为在该领域中的微生物学家对催化分解代谢中的初始反应的硝基烯二恶英酶的进化起源和方法感到好奇。相反,与来自革兰氏阴性菌株的先前报道的硝基萘二氧化酶,该研究源自萘萘二氧化酶,本研究中的3-硝基甲苯(3NT)二恶英酶是来自革兰氏阳性菌株,并且是BPH样的一个例子硝基芳二氧化根果酶。该酶的羟基化在苯环的2,3个位置中的羟基化偏好于从3NT生产3-甲基基甲酚,也是研究的硝基丙烯二氧化酶中的独特性。这些发现将丰富我们对微生物中硝基纳二氧化根果酶的多样性和起源的理解。

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