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Involvement of a Novel Enzyme, MdpA, in Methyl tert-Butyl Ether Degradation in Methylibium petroleiphilum PM1 ▿

机译:新型酶MdpA参与甲基化石油醚PM1中甲基叔丁基醚的降解▿

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摘要

Methylibium petroleiphilum PM1 is a well-characterized environmental strain capable of complete metabolism of the fuel oxygenate methyl tert-butyl ether (MTBE). Using a molecular genetic system which we established to study MTBE metabolism by PM1, we demonstrated that the enzyme MdpA is involved in MTBE removal, based on insertional inactivation and complementation studies. MdpA is constitutively expressed at low levels but is strongly induced by MTBE. MdpA is also involved in the regulation of tert-butyl alcohol (TBA) removal under certain conditions but is not directly responsible for TBA degradation. Phylogenetic comparison of MdpA to related enzymes indicates close homology to the short-chain hydrolyzing alkane hydroxylases (AH1), a group that appears to be a distinct subfamily of the AHs. The unique, substrate-size-determining residue Thr59 distinguishes MdpA from the AH1 subfamily as well as from AlkB enzymes linked to MTBE degradation in Mycobacterium austroafricanum.
机译:耐甲基化石油醚PM1是一种特性良好的环境菌株,能够完全代谢燃料含氧化合物甲基叔丁基醚(MTBE)。使用我们建立的分子遗传系统来研究PM1的MTBE代谢,我们基于插入失活和互补研究证明了MdpA酶参与MTBE的去除。 MdpA在低水平上组成性表达,但被MTBE强烈诱导。 MdpA在某些条件下还参与叔丁醇(TBA)去除的调节,但并不直接导致TBA降解。 MdpA与相关酶的系统发生比较表明与短链水解烷烃羟化酶(AH1)的同源性很高,后者似乎是AHs的一个不同亚家族。独特的底物大小决定性残基Thr59将MdpA与AH1子家族以及与奥氏分枝杆菌MTBE降解相关的AlkB酶区分开。

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