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Production characterization and determination of the real catalytic properties of the putative ‘succinate dehydrogenase’ from Wolinella succinogenes

机译:产自Wolinella succinogenes的推定的琥珀酸脱氢酶的真实催化性质的生产表征和测定

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摘要

Both the genomes of the epsilonproteobacteria Wolinella succinogenes and Campylobacter jejuni contain operons (sdhABE) that encode for so far uncharacterized enzyme complexes annotated as ‘non-classical’ succinate:quinone reductases (SQRs). However, the role of such an enzyme ostensibly involved in aerobic respiration in an anaerobic organism such as W. succinogenes has hitherto been unknown. We have established the first genetic system for the manipulation and production of a member of the non-classical succinate:quinone oxidoreductase family. Biochemical characterization of the W. succinogenes enzyme reveals that the putative SQR is in fact a novel methylmenaquinol:fumarate reductase (MFR) with no detectable succinate oxidation activity, clearly indicative of its involvement in anaerobic metabolism. We demonstrate that the hydrophilic subunits of the MFR complex are, in contrast to all other previously characterized members of the superfamily, exported into the periplasm via the twin-arginine translocation (tat)-pathway. Furthermore we show that a single amino acid exchange (Ala86→His) in the flavoprotein of that enzyme complex is the only additional requirement for the covalent binding of the otherwise non-covalently bound FAD. Our results provide an explanation for the previously published puzzling observation that the C. jejuni sdhABE operon is upregulated in an oxygen-limited environment as compared with microaerophilic laboratory conditions.
机译:ε细菌性Wolinella succinogenes和空肠弯曲菌中的基因组都含有操纵子(sdhABE),它们编码迄今未表征的酶复合物,标注为“非经典”琥珀酸:醌还原酶(SQRs)。然而,迄今为止还不清楚这种酶表面上参与厌氧生物如琥珀酸W.中的有氧呼吸的作用。我们已经建立了第一个遗传系统来操纵和生产非经典琥珀酸酯:醌氧化还原酶家族的成员。琥珀酸W.酶的生化特性表明,推定的SQR实际上是一种新型的甲基甲基萘酚:富马酸酯还原酶(MFR),没有可检测到的琥珀酸氧化活性,清楚地表明了其参与厌氧代谢。我们证明,与所有其他先前表征的超家族成员相反,MFR复合物的亲水亚基通过双精氨酸易位(tat)途径出口到周质中。此外,我们表明该酶复合物的黄素蛋白中的单个氨基酸交换(Ala86→His)是对其他非共价结合的FAD进行共价结合的唯一附加要求。我们的结果为先前发表的令人困惑的观察结果提供了解释,即与微需氧实验室条件相比,空肠弯曲杆菌sdhABE操纵子在氧气受限的环境中被上调。

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