Huston Wilhelmina M, Naylor Jennifer, Cianciotto Nicholas P, Jennings Michael P, McEwan Alastair G
Centre for Metals in Biology and School of Molecular and Microbial Sciences, University of Queensland, St Lucia, QLD 4072, Australia.
Microbes Infect. 2008 Apr;10(5):497-503. doi: 10.1016/j.micinf.2008.01.011. Epub 2008 Jan 25.
Multicopper oxidases have been described to have functions in copper tolerance, manganese oxidation, and iron oxidation in a range of bacteria. The putative cytoplasmic membrane multicopper oxidase from Legionella pneumophila was investigated. The mcoL gene was found to be critical for aerobic extracellular growth under either iron-limiting conditions or in the presence of ferrous Fe(II) iron, as a sole source of this essential metal. The mcoL mutants showed minor growth defects when grown in the presence of Fe(III) as the iron source. In contrast, intracellular growth and survival was not affected by the absence of the mcoL gene regardless of available iron concentration. The evidence presented here could indicate a possible role for mcoL in prevention of the toxic effects of ferrous iron during aerobic conditions. However, a function in high-affinity acquisition of iron could also be possible given the inability of the McoL mutants to grow aerobically under iron-limiting conditions.
多铜氧化酶在一系列细菌中具有铜耐受性、锰氧化和铁氧化功能。对嗜肺军团菌假定的细胞质膜多铜氧化酶进行了研究。发现mcoL基因对于在铁限制条件下或存在亚铁Fe(II)作为这种必需金属的唯一来源时的需氧细胞外生长至关重要。当以Fe(III)作为铁源生长时,mcoL突变体表现出轻微的生长缺陷。相比之下,无论可用铁浓度如何,mcoL基因的缺失都不会影响细胞内生长和存活。此处提供的证据可能表明mcoL在有氧条件下预防亚铁毒性作用中可能发挥作用。然而,鉴于McoL突变体在铁限制条件下无法进行有氧生长,其在高亲和力获取铁方面发挥作用也是有可能的。