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Induction of Methyl Tertiary Butyl Ether (MTBE)-Oxidizing Activity in Mycobacterium vaccae JOB5 by MTBE

机译:MTBE在牛分枝杆菌JOB5中诱导甲基叔丁基醚(MTBE)的氧化活性

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摘要

Alkane-grown cells of Mycobacterium vaccae JOB5 cometabolically degrade the gasoline oxygenate methyl tertiary butyl ether (MTBE) through the activities of an alkane-inducible monooxygenase and other enzymes in the alkane oxidation pathway. In this study we examined the effects of MTBE on the MTBE-oxidizing activity of M. vaccae JOB5 grown on diverse nonalkane substrates. Carbon-limited cultures were grown on glycerol, lactate, several sugars, and tricarboxylic acid cycle intermediates, both in the presence and absence of MTBE. In all MTBE-containing cultures, MTBE consumption occurred and tertiary butyl alcohol (TBA) and tertiary butyl formate accumulated in the culture medium. Acetylene, a specific inactivator of alkane- and MTBE-oxidizing activities, fully inhibited MTBE consumption and product accumulation but had no other apparent effects on culture growth. The MTBE-dependent stimulation of MTBE-oxidizing activity in fructose- and glycerol-grown cells was saturable with respect to MTBE concentration (50% saturation level = 2.4 to 2.75 mM), and the onset of MTBE oxidation in glycerol-grown cells was inhibited by both rifampin and chloramphenicol. Other oxygenates (TBA and tertiary amyl methyl ether) also induced the enzyme activity required for their own degradation in glycerol-grown cells. Presence of MTBE also promoted MTBE oxidation in cells grown on organic acids, compounds that are often found in anaerobic, gasoline-contaminated environments. Experiments with acid-grown cells suggested induction of MTBE-oxidizing activity by MTBE is subject to catabolite repression. The results of this study are discussed in terms of their potential implications towards our understanding of the role of cometabolism in MTBE and TBA biodegradation in gasoline-contaminated environments.
机译:牛分枝杆菌JOB5的链烷生长细胞通过烷烃可诱导的单加氧酶和其他酶在烷烃氧化途径中的活性,代谢分解汽油中的含氧化合物甲基叔丁基醚(MTBE)。在这项研究中,我们研究了MTBE对生长在多种非烷烃底物上的牛痘分枝杆菌JOB5的MTBE氧化活性的影响。在存在和不存在MTBE的情况下,碳限制的培养物都在甘油,乳酸,几种糖和三羧酸循环中间体上生长。在所有含MTBE的培养物中,发生MTBE消耗,并且叔丁醇(TBA)和甲酸叔丁酯积聚在培养基中。乙炔是烷烃和MTBE氧化活性的特定灭活剂,可完全抑制MTBE消耗和产物积聚,但对培养物生长没有其他明显影响。相对于MTBE浓度(50%饱和度= 2.4至2.75 mM),MTBE依赖的果糖和甘油生长的细胞对MTBE氧化活性的刺激是饱和的,并且抑制了甘油生长的细胞中MTBE氧化的发作利福平和氯霉素都可以。其他含氧化合物(TBA和叔戊基甲基醚)也诱导了它们自身在甘油生长的细胞中降解所需的酶活性。 MTBE的存在还促进了有机酸(通常在厌氧,汽油污染的环境中发现的化合物)上生长的细胞中MTBE的氧化。用酸生长细胞进行的实验表明,MTBE对MTBE氧化活性的诱导会受到分解代谢物的抑制。讨论了这项研究的结果可能对我们理解代谢代谢在汽油污染环境中MTBE和TBA生物降解中的作用的潜在影响。

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