Faculty of Biochemistry and Molecular Medicine, and Biocenter Oulu, University of Oulu, Oulu, Finland.
Theodor-Boveri-Institut für Biowissenschaften der Universität Würzburg, Würzburg, Germany.
Biochem J. 2019 Jul 15;476(13):1975-1994. doi: 10.1042/BCJ20190314.
The trifunctional enzyme (TFE) catalyzes the last three steps of the fatty acid β-oxidation cycle. Two TFEs are present in , EcTFE and anEcTFE. EcTFE is expressed only under aerobic conditions, whereas anEcTFE is expressed also under anaerobic conditions, with nitrate or fumarate as the ultimate electron acceptor. The anEcTFE subunits have higher sequence identity with the human mitochondrial TFE (HsTFE) than with the soluble EcTFE. Like HsTFE, here it is found that anEcTFE is a membrane-bound complex. Systematic enzyme kinetic studies show that anEcTFE has a preference for medium- and long-chain enoyl-CoAs, similar to HsTFE, whereas EcTFE prefers short chain enoyl-CoA substrates. The biophysical characterization of anEcTFE and EcTFE shows that EcTFE is heterotetrameric, whereas anEcTFE is purified as a complex of two heterotetrameric units, like HsTFE. The tetrameric assembly of anEcTFE resembles the HsTFE tetramer, although the arrangement of the two anEcTFE tetramers in the octamer is different from the HsTFE octamer. These studies demonstrate that EcTFE and anEcTFE have complementary substrate specificities, allowing for complete degradation of long-chain enoyl-CoAs under aerobic conditions. The new data agree with the notion that anEcTFE and HsTFE are evolutionary closely related, whereas EcTFE belongs to a separate subfamily.
三功能酶(TFE)催化脂肪酸β-氧化循环的最后三个步骤。有两种 TFE 存在于 ,EcTFE 和 anEcTFE。EcTFE 仅在有氧条件下表达,而 anEcTFE 也在无氧条件下表达,以硝酸盐或延胡索酸作为最终电子受体。anEcTFE 亚基与人类线粒体 TFE(HsTFE)的序列同一性高于可溶性 EcTFE。像 HsTFE 一样,在这里发现 anEcTFE 是一种膜结合复合物。系统的酶动力学研究表明,anEcTFE 对中链和长链烯酰-CoA 有偏好,类似于 HsTFE,而 EcTFE 则偏好短链烯酰-CoA 底物。anEcTFE 和 EcTFE 的生物物理特性表明,EcTFE 是异四聚体,而 anEcTFE 则作为两个异四聚体单元的复合物被纯化,类似于 HsTFE。anEcTFE 的四聚体组装类似于 HsTFE 四聚体,尽管两个 anEcTFE 四聚体在八聚体中的排列与 HsTFE 八聚体不同。这些研究表明,EcTFE 和 anEcTFE 具有互补的底物特异性,允许在有氧条件下完全降解长链烯酰-CoA。新数据与 anEcTFE 和 HsTFE 在进化上密切相关的观点一致,而 EcTFE 属于一个单独的亚科。