Puentes-Cala Edinson, Liebeke Manuel, Markert Stephanie, Harder Jens
Department of Microbiology, Max Planck Institute for Marine Microbiology, Celsiusstr. 1, 28359 Bremen, Germany.
Department of Symbiosis, Max Planck Institute for Marine Microbiology, Celsiusstr. 1, 28359 Bremen, Germany.
Metabolites. 2018 Feb 7;8(1):12. doi: 10.3390/metabo8010012.
The microbial degradation pathways of bicyclic monoterpenes contain unknown enzymes for carbon-carbon cleavages. Such enzymes may also be present in the betaproteobacterium , a model organism to study the anaerobic monoterpene degradation. In this study, a deletion mutant strain missing the first enzyme of the monocyclic monoterpene pathway transformed cometabolically the bicyclics sabinene, 3-carene and α-pinene into several monocyclic monoterpenes and traces of cyclic monoterpene alcohols. Proteomes of cells grown on bicyclic monoterpenes resembled the proteomes of cells grown on monocyclic monoterpenes. Many transposon mutants unable to grow on bicyclic monoterpenes contained inactivated genes of the monocyclic monoterpene pathway. These observations suggest that the monocyclic degradation pathway is used to metabolize bicyclic monoterpenes. The initial step in the degradation is a decyclization (ring-opening) reaction yielding monocyclic monoterpenes, which can be considered as a reverse reaction of the olefin cyclization of polyenes.
双环单萜的微生物降解途径包含用于碳-碳裂解的未知酶。这类酶也可能存在于β-变形菌中,β-变形菌是研究厌氧单萜降解的模式生物。在本研究中,缺失单环单萜途径第一种酶的缺失突变株将双环的桧烯、3-蒈烯和α-蒎烯共代谢转化为几种单环单萜和痕量的环单萜醇。在双环单萜上生长的细胞的蛋白质组类似于在单环单萜上生长的细胞的蛋白质组。许多不能在双环单萜上生长的转座子突变体含有单环单萜途径的失活基因。这些观察结果表明,单环降解途径被用于代谢双环单萜。降解的第一步是一个开环反应,生成单环单萜,这可以被认为是多烯烯烃环化的逆反应。