Wuhan Institute of Virology, Chinese Academy of Sciences, China.
Appl Microbiol Biotechnol. 2010 Aug;87(6):2077-85. doi: 10.1007/s00253-010-2666-4. Epub 2010 May 28.
Cupriavidus necator JMP134 utilizes meta-nitrophenol (MNP) as a sole source of carbon, nitrogen, and energy. The metabolic reconstruction of MNP degradation performed in silico suggested that the mnp cluster might have played important roles in MNP degradation. In order to experimentally confirm the prediction, we have now characterized mnpA-encoded meta-nitrophenol nitroreductase involved in the initial reaction of MNP degradation. Real-time PCR analysis indicated that mnpA played an essential role in MNP degradation. MnpA was purified to homogeneity as His-tagged proteins and was considered to be a dimer as determined by gel filtration. MnpA was an MNP nitroreductase with a tightly bound flavin mononucleotide (FMN), catalyzing the partial reduction of MNP to meta-hydroxylaminophenol via meta-nitrosophenol in the presence of NADPH and oxygen. The accumulation of meta-nitrosophenol was confirmed with the results of liquid chromatography-diode array detection and time-of-flight mass spectrometry for the first time. The low K (m) and high k (cat) of MnpA as well as MNP-inducible transcription of mnpA suggested that MNP was the physiological substrate for this nitroreductase. In addition, the phylogenetic analysis revealed that nitroreductases of known physiological function including MnpA constituted a new clade in the nitro-FMN-reductase superfamily.
贪铜菌(Cupriavidus necator)JMP134 可以利用间硝基苯酚(MNP)作为唯一的碳源、氮源和能源。通过计算机模拟对 MNP 降解的代谢重建表明,mnp 簇可能在 MNP 降解中发挥了重要作用。为了实验验证这一预测,我们现在对参与 MNP 降解初始反应的 mnpA 编码的间硝基苯酚硝基还原酶进行了表征。实时 PCR 分析表明 mnpA 在 MNP 降解中起着至关重要的作用。MnpA 被纯化为 His 标记的蛋白,并通过凝胶过滤确定为二聚体。MnpA 是一种 MNP 硝基还原酶,它与紧密结合的黄素单核苷酸(FMN)结合,在 NADPH 和氧气存在的情况下,将 MNP 部分还原为间氨基酚,通过间硝基苯酚。液相色谱-二极管阵列检测和飞行时间质谱的结果首次证实了间亚硝基苯酚的积累。MnpA 的低 K(m)和高 k(cat)以及 mnpA 的 MNP 诱导转录表明 MNP 是这种硝基还原酶的生理底物。此外,系统发育分析表明,包括 MnpA 在内的具有已知生理功能的硝基还原酶在硝基-FMN-还原酶超家族中构成了一个新的分支。