Murray Karen J, Webb Samuel M, Bargar John R, Tebo Bradley M
Scripps Institution of Oceanography, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093-0202, USA.
Appl Environ Microbiol. 2007 Nov;73(21):6905-9. doi: 10.1128/AEM.00971-07. Epub 2007 Sep 7.
Cobalt(II) oxidation in aquatic environments has been shown to be linked to Mn(II) oxidation, a process primarily mediated by bacteria. This work examines the oxidation of Co(II) by the spore-forming marine Mn(II)-oxidizing bacterium Bacillus sp. strain SG-1, which enzymatically catalyzes the formation of reactive nanoparticulate Mn(IV) oxides. Preparations of these spores were incubated with radiotracers and various amounts of Co(II) and Mn(II), and the rates of Mn(II) and Co(II) oxidation were measured. Inhibition of Mn(II) oxidation by Co(II) and inhibition of Co(II) oxidation by Mn(II) were both found to be competitive. However, from both radiotracer experiments and X-ray spectroscopic measurements, no Co(II) oxidation occurred in the complete absence of Mn(II), suggesting that the Co(II) oxidation observed in these cultures is indirect and that a previous report of enzymatic Co(II) oxidation may have been due to very low levels of contaminating Mn. Our results indicate that the mechanism by which SG-1 oxidizes Co(II) is through the production of the reactive nanoparticulate Mn oxide.
在水生环境中,钴(II)的氧化已被证明与锰(II)的氧化有关,这一过程主要由细菌介导。这项工作研究了产芽孢的海洋锰(II)氧化细菌芽孢杆菌属菌株SG-1对钴(II)的氧化作用,该菌株能酶促催化活性纳米颗粒状锰(IV)氧化物的形成。将这些芽孢制剂与放射性示踪剂以及不同量的钴(II)和锰(II)一起孵育,并测量锰(II)和钴(II)的氧化速率。发现钴(II)对锰(II)氧化的抑制以及锰(II)对钴(II)氧化的抑制均具有竞争性。然而,从放射性示踪剂实验和X射线光谱测量结果来看,在完全不存在锰(II)的情况下未发生钴(II)氧化,这表明在这些培养物中观察到的钴(II)氧化是间接的,并且之前关于酶促钴(II)氧化的报道可能是由于污染锰的含量极低所致。我们的结果表明,SG-1氧化钴(II)的机制是通过产生活性纳米颗粒状锰氧化物。