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Structure and Function of YcnD from Bacillus subtilis, a Flavin-Containing Oxidoreductase(,).

机译:枯草芽孢杆菌(一种含黄素的氧化还原酶)的YcnD的结构和功能。

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YcnD from the Gram-positive bacterium Bacillus subtilis is a member of a family of bacterial proteins that act as NADH- and/or NADPH-dependent oxidoreductases. Here, we report for the first time on the biochemical characterization of the purified protein, demonstrating that YcnD is an FMN-containing enzyme that can be reduced by NADH or NADPH (K(m) = 6.4 and 4.4 muM, respectively). In the presence of free FMN as the electron-accepting substrate, the latter reductant showed a ping-pong Bi-Bi reaction mechanism, whereas utilization of NADH is competitively inhibited by this substrate. This finding suggests that NADPH is the physiological reductant of the enzyme. We also show that YcnD reduces nitro-organic compounds, chromate, and a series of azo dyes. The reduction of azo dyes appears to be mediated by free reduced FMN because the reaction is considerably slower in its absence. Structure determination by X-ray crystallography revealed that YcnD folds into a three layer alpha-beta-alpha sandwich stronglyresembling the topology of the NADH oxidase superfamily. Similar to homologous bacterial oxidoreductase, YcnD forms homodimers with an extended dimer interface. The biochemical data and the structure are discussed in light of the putative physiological function of YcnD as an oxidoreductase delivering reduced FMN to enzymes that require the reduced cofactor for activity.
机译:革兰氏阳性细菌枯草芽孢杆菌的YcnD是一类细菌蛋白质的成员,这些蛋白质起着NADH和/或NADPH依赖性氧化还原酶的作用。在这里,我们首次报告纯化蛋白的生化特征,证明YcnD是一种含FMN的酶,可以被NADH或NADPH还原(分别为K(m)= 6.4和4.4μM)。在游离的FMN作为电子接受底物的情况下,后一种还原剂显示出乒乓Bi-Bi反应机理,而NADH的利用受到该底物的竞争性抑制。该发现表明NADPH是该酶的生理还原剂。我们还显示,YcnD可以还原硝基有机化合物,铬酸盐和一系列偶氮染料。偶氮染料的还原似乎是由游离的还原FMN介导的,因为在不存在该反应的情况下,该反应相当缓慢。通过X射线晶体学确定结构,发现YcnD折叠成三层α-β-α三明治,非常类似于NADH氧化酶超家族的拓扑。与同源细菌氧化还原酶类似,YcnD形成具有扩展二聚体界面的同源二聚体。根据YcnD作为氧化还原酶的假定生理功能讨论了生化数据和结构,该功能将还原的FMN传递给需要还原的辅因子才能发挥活性的酶。

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