School of Chemical and Biomolecular Engineering, Olin Hall, Cornell University, Ithaca, NY 14853, USA.
Arch Microbiol. 2011 Feb;193(2):89-93. doi: 10.1007/s00203-010-0645-x. Epub 2010 Nov 10.
In an effort to improve understanding of the role of Cu(II) in bacterial Mn(II) oxidation, a model Mn(II)-oxidizing bacterium, Leptothrix discophora SS-1, was grown in presence of toxic and non-toxic concentrations of Cu(II), Cd(II) and Mn(II). Mn(II)-oxidizing activity increased by 40% when cells were grown in the presence of 0.05 microM of Cu(II) and increased twofold at 0.18 microM Cu(II). Toxic levels of Cd(II) did not stimulate Mn(II) oxidizing activity, indicating that Mn(II) oxidation is not a response to metal toxicity. Stimulation by Cu(II) confirms the specific role of Cu(II) in Mn(II) oxidation. Comparison of transcript levels of the multicopper oxidase mofA gene in the presence and absence of added Cu(II) do not indicate a statistically significant change in mofA transcript levels in cultures supplemented with Cu(II). Thus, the exact role of Cu(II) in Mn(II) oxidation and its affect on mofA gene expression remain uncertain.
为了更好地理解 Cu(II) 在细菌 Mn(II) 氧化中的作用,我们选择了模式 Mn(II) 氧化菌 Leptothrix discophora SS-1,在存在有毒和无毒浓度的 Cu(II)、Cd(II) 和 Mn(II)的情况下对其进行培养。当细胞在 0.05 μM 的 Cu(II)存在下生长时,Mn(II)氧化活性增加了 40%,而在 0.18 μM 的 Cu(II)存在下则增加了两倍。有毒浓度的 Cd(II)并未刺激 Mn(II)氧化活性,这表明 Mn(II)氧化不是对金属毒性的反应。Cu(II) 的刺激证实了 Cu(II) 在 Mn(II)氧化中的特定作用。在存在和不存在外加 Cu(II)的情况下,比较多铜氧化酶 mofA 基因的转录水平,表明在补充 Cu(II)的培养物中,mofA 转录水平没有统计学上的显著变化。因此,Cu(II)在 Mn(II)氧化中的具体作用及其对 mofA 基因表达的影响仍不确定。