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首页> 外文期刊>Applied Microbiology and Biotechnology >Roles of tert-butyl formate, tert-butyl alcohol and acetone in the regulation of methyl tert-butyl ether degradation by Mycobacterium austroafricanum IFP 2012
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Roles of tert-butyl formate, tert-butyl alcohol and acetone in the regulation of methyl tert-butyl ether degradation by Mycobacterium austroafricanum IFP 2012

机译:甲酸叔丁酯,叔丁醇和丙酮在甲型分枝杆菌IFP 2012调节甲基叔丁基醚降解中的作用

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摘要

Mycobacterium austroafricanum IFP 2012 is a Gram-positive strain able to grow on methyl tert-butyl ether (MTBE) as a sole carbon and energy source. The effect of two downstream metabolites of MTBE, tertbutyl formate (TBF) and tert-butyl alcohol (TBA) on MTBE degradation was investigated using resting cells. The addition of low concentrations of TBF decreased the MTBE degradation rate by about 30%. In contrast, the addition of TBA did not have a significant effect on MTBE degradation rate, even at high concentrations; and it was also shown that TBA degradation occur-red only once MTBE was exhausted. At neutral pH, TBF hydrolysis involved mainly an esterase-type activity regulated by the presence of TBA. The TBF degradation rate was about four times lower than the MTBE degradation rate. Furthermore, acetone was identified as an intermediate during TBA degradation. An acetone mono-oxygenase activity, inhibited by methimazole but not by acetylene, was suggested. It was different from the MTBE/TBA mono-oxygenase and, thus, acetone did not appear to compete with MTBE and TBA for the same enzyme. These new results show that the metabolic regulation of the early steps of MTBE degradation by M. austroafricanum IFP 2012 is complex, involving inhibition and competition phenomena. [References: 32]
机译:南方分枝杆菌IFP 2012是一种革兰氏阳性菌株,能够在甲基叔丁基醚(MTBE)上作为唯一碳和能源而生长。使用静止细胞研究了MTBE的两种下游代谢产物甲酸叔丁酯(TBF)和叔丁醇(TBA)对MTBE降解的影响。添加低浓度的TBF可使MTBE降解率降低约30%。相反,即使在高浓度下,TBA的添加对MTBE的降解率也没有显着影响。并且还表明,仅当MTBE耗尽时,TBA降解才会发生红色。在中性pH下,TBF水解主要涉及由TBA的存在调节的酯酶型活性。 TBF降解率比MTBE降解率低约四倍。此外,丙酮被确定为TBA降解过程中的中间体。有人提出了甲乙咪唑但不受乙炔抑制的丙酮单加氧酶活性。它不同于MTBE / TBA单加氧酶,因此,丙酮似乎没有与MTBE和TBA竞争相同的酶。这些新的结果表明,奥氏支原体IFP 2012对MTBE降解早期步骤的代谢调控非常复杂,涉及抑制和竞争现象。 [参考:32]

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